SlideShare una empresa de Scribd logo
1 de 21
NANO TECHNOLOGY
Page 1
CHAPTER 1
INTRODUCTION
1. 1 INTRODUCTION
“Imagine a world in which microscopic procreating robots are sent into the human body
with the mission of NANOTECHNOLOGY detecting cancer cells, disassembling them and
sending them out into the bloodstream as a waste products. Since fiction or reality?
In 1959, Richard Feynman made a statement “there is a plenty of room at the bottom”. He
bought forth-new concept based on study devoted to manipulating smaller and smaller units
of matter.
Until 1974, the materials were generally investigated at micrometer level, which was
known as micro technology. In 1974 the term Nano technology was coined by norio
Taniguchi at the university of Tokyo.
In 1986, MIT researcher Eric Drexler wrote his much published book “Engine of Creation”
which took Nano technology to the stage of general investigations of multiple interests.
1.2 DEFINATION
The term Nano is derived from Greek word, which means dwarf. Nano means billionth part.
A Nano meter is one NANOTECHNOLOGY billionth of a meter. An atom is approximately
one third of Nano meter.
We find various definitions for Nano technology. One definition is as follows. “ Nano
technology is a branch of engineering that deals with design and manufacture of extremely
small electronics circuits and mechanical devices built at molecular level of matter”.
The institute of Nano technology in the UK expressed it as “ Science and Technology where
dimensions and tolerance in the range of 0.1 Nano meter to 100nm play a critical role”.
1.3 PROPERTIES OF NANOTECHNOLOGY
·Not only miniaturization but change in physical properties NANOTECHNOLOGY
· Laws of quantum physics
NANO TECHNOLOGY
Page 2
·Metals become harder
·Ceramics become softer
·Composites and alloys of a whole variety possible
·Different interactions with light/other radiation
·New electrical properties
·Novel biological properties Smart materials
1.4 SMART MATERIAL
A smart material is one which is capable of detecting a change in its environment and reacts
appropriately so as to produce desired results . The reaction may be in terms of change of
shape or significant change in its physical property.
 Smart materials are;
 piezoelectric materials
 magnetostrictive materials
 Electro rheological fluids and magneto rheological fluids
 shape memory alloys
Figure 1.4.1: smart material
1.5 MEMS (MICROELECTOMECHANICAL SYSTEMS)
MEMS are the acronym for microelectromecanical systems. This is actually a result of ever-
continuing pursuit of humankind for miniaturization.
“MEMS is a process technology to produce tiny integrated device or system which
incorporate mechanical elements such as valves, gears, sensors, actuators along with on-chip
microcircuits to fabricate high performing low cost, compact engineering systems”
NANO TECHNOLOGY
Page 3
CHAPTER 2
TOOLS USED IN NANOTECHNOLOGY
2.1 TOOLS USED IN NANOTECHNOLOGY
To manipulate at the atomic level first thing we require is the tool to see and locate the atom.
To do so we have various microscopes like Scanning Electron Microscope (SEM),
Transmission Electron Microscope(TEM), Atomic Force microscope (AFM). Scanning
Tunneling Microscope (STM).
The next tool is NANOMANIPULATOR, which eventually helps us feel the individual
atoms in the real environment.
The third tool is NANOTWEEZERS, The Tweezer structure can be closed with an applied
electrical field like a pair of chopsticks to produce a device that grasps and moves molecules
or atoms.
Figure 2.1.1 : Nanotweezers
2.2 NANO DEVICES
2.1.1 NANOTUBE
A Nano tube is a sheet of carbon atoms joined in a pattern of hexagon and rolled into a
cylinder. Nano tubes are stronger ,non-reactive and can withstand high temperature .
NANO TECHNOLOGY
Page 4
 Nanotubes are better alternative to silicon component which will pose problems
because of continuing miniaturization.
 The Nanotube has been used in a computer circuit to make logic circuits.
 Electrical properties of SWNT can be used to generate mechanical motion from
electrical energy.
 The extreme sensitivity of electrical properties to presence of trace elements also
enhances their potential as sensors.
 Nanotubes can act as bearings, gears and even as pumps and pistons in combination
with Fullenes.
Figure 2.1.1.1: Nanotube
2.1.2 CARBON NANOTUBE
 Carbon Nanotubes are allotropes of carbon with a cylindrical Nanostructure.
 They have length-to-diameter ratio of upto 132,000,000:1.
 Nanotubes are members of the fullerence structural family. Their name is derived
from their long, hollow structure with the walls formed by one-atom-thick sheets of
carbon, ca-ed grapheme.
Figure 2.1.2.1 : carbon Nanotube
NANO TECHNOLOGY
Page 5
 PROPERTIES
 Highest strength to weight ratio, helps in creating light weight spacecrafts.
 Easily penetrate membranes such as cell walls. Helps in cancer treatment.
 Electrical resistance changes significantly when other molecules attach themselves to
the Carbon atoms. Helps in developing sensors that can detect chemical vapours.
 APPLICATION
 Easton –Bell Sports, Inc. using CNT in making bicycle component.
 Zyvex Technologies using CNT for manufacturing of light weight boats.
 Replacing transistors from the silicon chips as they are small and emits less heat.
 In electric cables and wires.
 In solar cells.
 In fabrics.
2.1.3 NANORODS (QUANTUM DOTS)
 Nano rods are one morphology of Nano scale objects.
 Dimensions range from 1-100nm.
 They may be synthesized from metals or semiconducting materials.
 A combination of ligands act as shape control agents and bond to different facets of
the Nano rod with different strengths. This allows different faces of the Nano rod to
grow at different rates, producing an elongated object.
NANO TECHNOLOGY
Page 6
Figure 2.1.3.1: Nano rods
 USES
 In display technologies, because the reflectivity of the rods can be changed
by changing their orientation with an applied electric field.
 In microelectromechanical systems(MEMS)
 In cancer therapeutics
2.1.4 NANOBOTS
 Close to the scale of 10^-9.
 Largely in R&D phase.
 Nanobots of 1.5 Nanometers across, capable of counting specific molecules in a
chemical sample.
 Since Nano robots would be microscopic in size, it would probably be necessary for
very large numbers of them to work together to perform microscopic and
macroscopic tasks.
 Capable of replication using environmental resources.
NANO TECHNOLOGY
Page 7
Figure 2.1.4.1 : Nanobots

APPLICATION
 Detection of toxic components in environment.
 In drug delivery.
 Biomedical instrumentation
NANO TECHNOLOGY
Page 8
CHAPTER 3
APPROACHES IN NANOTECHNOLOGY
3.1 BOTTOM UP:
In the bottom up approach different materials and devices are constructed from molecular components
of their own. They chemically assemble themselves by recognizing the molecules of their own breed.
Figure 3.1.1: bottom up
Examples of molecular self assembly are Watson crick base pairing, Nano-lithoghaphy.
Figure 3.1.2: example of bottom up
NANO TECHNOLOGY
Page 9
3.2 TOP DOWN:
 In top down approach Nano objects and materials are created by laager entities without
bouncing its atomic reactions usually top down approach is practiced less as compared to the
bottom up approach.
 Solid-state techniques can also be used to create devices known as Nanoelectromechanical
systems or MEMS.
 MEMS became practical once they could be fabricated using modified semiconductor device
fabrication technologies, normally used to make electronics.
Figure 3.2.1: top down
3.3 MATERIALS USED
 ZINC OXIDE:
Dirt repellent, hydrophobic, cosmetics & stain resistant.
 SILVER ION:
Healing property.
NANO TECHNOLOGY
Page 10
 GOLD ION:
Chip fabrication , drug delivery.
3.4 NANO COMPOSITES
They are the type of composite materials with at least one dimension in the range of upto few
lines of Nanometer. They posses high plasticity, high resistivity and high diffusibility. They
are used in bumoers of cars.
NANO TECHNOLOGY
Page 11
CHAPTER 4
APPLICATION
4.1 APPLICATION
The MEMS technology has found ready use in developing micro sensors for control of
manufacturing processes, vehicles, and biomedical systems to micro seismometers for
monitoring the earthquake phenomena.
 Nano sensors may be integrated into a material at the production stage without
distorting it, or they may be incorporated as invisible thin polymer layers on a surface
when changes occurs.
 Nano electronics will replace microelectronics. The components of these electronics
will include molecular mimics, bio molecules and DNA SET’s .Energy may
eventually be transmitted in circuits via photons rather than electrons.
 We will be able to produce faster and smaller computers.
 Besides electronic applications it has vast scope for medicinal applications. We can
have machines moving in capillaries clearing clots, stones etc.
 Internal bleedings and fractures can be treated.
4.2 NANOTECHNOLOGY IN DRUGS(CANCER)
 Provide new options for drug delivery and drug therapies.
 Enable drugs to be delivered to precisely the right location in the body and release
drug does on a predetermined schedule for optimal treatment.
 Attach the drug to a Nano sized carrier.
 They become localized at the disease site, i.e cancer tumour.
NANO TECHNOLOGY
Page 12
 Then they release medicine that kills the tumour.
 Current treatment is through radiotherapy or chemotherapy.
 Nanobots can clear the blockage in arteries.
Figure 4.2.1: Nanotechnology in drugs
4.3 NANO TECHNOLOGY IN FABRICS
The properties of familiar materials are being changed by manufacturers who are adding
Nano-sized components to conventional materials to improve performance.
Figure 4.3.1: Nanotechnology in fabrics
NANO TECHNOLOGY
Page 13
4.4 NANOTECHNOLOGY IN MOBILE
 Morph, a Nanotechnology concept device developed by Nokia Research Center
(NRC) and the University of Cambridge (UK).
 The morph will be super hydrophobic making it extremely dirt repellent.
 It will be able to charge itself from available light sources using photovoltaic
Nanowire grass covering it’s surface.
 Nano scale electronics also allow stretching. Nokia envisage that a Nano scale mesh
of fibers will allow our mobile devices to be bent, stretched and folded into any
number of conceivable shapes.
Figure 4.4.1: Nanotechnology in mobile
4.5 NANOTECHNOLOGY IN ELECTRONICS
 Electrodes made from Nanowires enable flat panel displays to be flexible as well as
thinner than current flat panel displays.
 Nanolithography is used for fabrication of chips.
 The transistors are made of Nanowires, that are assembled on glass or thin films of
flexible plastic.
NANO TECHNOLOGY
Page 14
 E-paper, displays on sunglasses and map on car windshields.
Figure 4.5.1: Nanotechnology in electronics
4.6 NANOTECHNOLOGY IN COMPUTERS
The silicon transistors in your computer may be replaced by transistors based on
carbon Nanotubes.

A carbon Nanotube is a molecule in form of a hollow cylinder with a diameter
of around a Nanometer which consists of pure carbon.

Nanorods is a upcoming technology in the displays techniques due to less
consumption of electricity and less heat emission.

Size of microprocessors are reduced to greater extend.

Researchers at North Carolina State University says that growing arrays of
magnetic Nanoparticles, called Nanodots.
NANO TECHNOLOGY
Page 15
Figure 4.6.1: Nanotechnology in computers
4.7 VIRICHIP
Using Nanotechnology, researchers have developed a tiny silicon chip that acts like flypaper
to trap and help rapidly identify viruses. Called the "ViriChip," the device was developed in a
collaborative effort between BioForce Nanosciences Inc. of Ames, Iowa and Iowa's Des
Moines University.
Figure 4.7.1: virichip
NANO TECHNOLOGY
Page 16
OTHER USES
 Cutting tools made of Nano crystalline materials, such as tungsten carbide,
tantalum carbide, and titanium carbide, are more wear and erosion-resistant,
and last longer than their conventional counterparts.
 Silver Nano crystals have been embedded in bandages to kill bacteria and
prevent infection.
 Nano particulate-based synthetic bone Formed by manipulating calcium and
phosphate at the molecular level.
 Aerogels lightest known solid due to good insulating properties is used in
space suits and are proposed to use in space craft.
NANO TECHNOLOGY
Page 17
CHAPTER 5
NANOTECHNOLOGY IN INDIA
5.1 NANOTECHNOLOGY IN INDIA
IIT Mumbai is the premier organization in the field of Nanotechnology.
Research in the field of health, environment, medicines are still on.
Starting in 2001 the Government of India launched the Nano Science and Technology
Initiative(NSTI).
Then in 2007 the Nano science and Technology Mission 2007 was initiated with an
allocation of Rupees 1000 corers for a period of five years.
The main objectives of the Nano Mission are:
 Basic research promotion,
 Infrastructure development for carrying out front-ranking
research,
 Development of Nano technologies and their applications,
 Human resource development and
 International collaborations.
NANO TECHNOLOGY
Page 18
Figure 5.1.1: IIT Mumbai project
5.2 POSSIBILITIES FOR THE FUTURE
 Nanotechnology may make it possible to manufacture lighter, stronger ,
programmable materials that Require less energy to produce than conventional
material And that promise greater fuel efficiency in land transportation, ships,
aircraft and space vehicles.
 The future of Nanotechnology could very well include the use of Nano
robotics.
 The Nano robots have the potential to taken on human tasks as well as tasks
that humans could never complete. The rebuilding of the depleted ozone layer
could potentially be able to performed.
 There would be an entire Nano surgical field to help cure everything from
natural aging to diabetes to bone spurs.
 There would be almost nothing that couldn’t be repaired (eventually) with the
introduction of Nano surgery.
NANO TECHNOLOGY
Page 19
Figure 5.2.1: Nano surgery
5.3 PITFALLS OF NANOTECHNOLOGY
Nano-particles can get into the body through the skin, lungs and digestive system, thus
creating free radicals that can cause cell damage.
Once Nano-particles are in the bloodstream, they will be able to cross the blood-brain
barrier. The most dangerous Nano-application use for military purpose is the Nano-bomb that
contain engineered self multiplying deadly viruses that can continue to wipe out a
community, country or even a civilization. Nanobots because of their replicating behavior can
be big threat for GRAY GOO.
6. RISKS FACTORS
 Economic disruption from an abundance of cheap products .
 Economic oppression from artificially inflated prices .
 Social disruption from new products and lifestyles .
 Collected environmental damage from unregulated products.
NANO TECHNOLOGY
Page 20
CONCLUSION
Nanotechnology is an umbrella term that covers many areas of research. Nanotechnology
enables us to do radical things in virtually every technological and scientific arena. It will
also changes things in unpredictable and unanticipated ways.
As a conclusion to this topic I would like to say that Nanotechnology is a brand
new technology that has just began, it is a revolutionary science that will change all what we
knew before. The future that we were watching just in science fiction movies will in the near
future be real. This new technology will first of all, keep us healthy because of nanorobots
that will repair every damage that we have in our body.Secondly it will give scientists the
ability to manipulate the combination of atoms in an object and to turn it into a lighter,
stronger, and more durable object than before, just by using carbon nanotubes that are known
to be a hundred times stronger than steel and in addition to that they are very flexible. That
will lead to the creation of objects that can change their forms and have multiple purposes as
the Nokia Morph for example which is a prototype that will soon be out on the market.
Thirdly, Nanotechnology will give us an abundant energy because it will transform energy
more effectively, for example windmills which are known to have the ability to transform
wind energy into electrical energy, well new windmills that will use Nanotechnology will
have lighter and stronger blades (using carbon nanotubes) that will transform a lot more
energy thanbefore.
Nanotechnology covers a lot of domains today and will cover a lot more in the near future, it
is infinitely big and will make a lot of inventions come true like teleportation for example
which scintists are working on today.
NANO TECHNOLOGY
Page 21
REFERENCES
1. http://www.crnano.org/whatis.htm
2. http://www.nano.gov/nanotech-101/what/definition
3. http://www.nanowerk.com/nanotechnology/introduction/introduction_to_nanotechnol
ogy_1.php
4. http://iopscience.iop.org/journal/0957-
4484;jsessionid=E2DCBF9615388BF7F916B98119097491.ip-10-40-1-98
5. http://www.nanotech-now.com/
https://www.foresight.org/nano/
6. http://www.nature.com/nnano/index.html

Más contenido relacionado

La actualidad más candente

4 nanoelectronics chap 1
4 nanoelectronics chap 14 nanoelectronics chap 1
4 nanoelectronics chap 1Olbira Dufera
 
Application of nanotechnology
Application of nanotechnologyApplication of nanotechnology
Application of nanotechnologylutfulkabir2002
 
Application of nanotechnology
Application of nanotechnologyApplication of nanotechnology
Application of nanotechnologyMaharsh17
 
Nanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic IndustryNanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic Industrytabirsir
 
Nanotechnology: Origin, History and Principles
Nanotechnology: Origin, History and PrinciplesNanotechnology: Origin, History and Principles
Nanotechnology: Origin, History and PrinciplesHANAMANT SAVALAGI
 
APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.
APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.
APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.VIKAS KUMAR
 
Application of nanotechnology, Institute of Engineers ,Qatar Chapter
Application of nanotechnology, Institute of Engineers ,Qatar ChapterApplication of nanotechnology, Institute of Engineers ,Qatar Chapter
Application of nanotechnology, Institute of Engineers ,Qatar ChapterNarendra K. Agnihotri
 
Nanoelectronics Final
Nanoelectronics FinalNanoelectronics Final
Nanoelectronics Finalshikha2510
 
Nanotechnology
NanotechnologyNanotechnology
NanotechnologyKANNAN
 
Nanotechnology And Its Applications
Nanotechnology And Its ApplicationsNanotechnology And Its Applications
Nanotechnology And Its Applicationsmandykhera
 

La actualidad más candente (20)

Nanoelectronics
NanoelectronicsNanoelectronics
Nanoelectronics
 
4 nanoelectronics chap 1
4 nanoelectronics chap 14 nanoelectronics chap 1
4 nanoelectronics chap 1
 
Application of nanotechnology
Application of nanotechnologyApplication of nanotechnology
Application of nanotechnology
 
Nanotechnology ppt
Nanotechnology pptNanotechnology ppt
Nanotechnology ppt
 
Basics of nanotechnology
Basics of nanotechnologyBasics of nanotechnology
Basics of nanotechnology
 
Application of nanotechnology
Application of nanotechnologyApplication of nanotechnology
Application of nanotechnology
 
Nanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic IndustryNanotechnology Presentation For Electronic Industry
Nanotechnology Presentation For Electronic Industry
 
Nanotechnology: Origin, History and Principles
Nanotechnology: Origin, History and PrinciplesNanotechnology: Origin, History and Principles
Nanotechnology: Origin, History and Principles
 
APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.
APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.
APPLICATIONS OF NANOTECHNOLOGY IN ELECTRONICS.
 
Application of nanotechnology, Institute of Engineers ,Qatar Chapter
Application of nanotechnology, Institute of Engineers ,Qatar ChapterApplication of nanotechnology, Institute of Engineers ,Qatar Chapter
Application of nanotechnology, Institute of Engineers ,Qatar Chapter
 
NANOTECHNOLOGY
NANOTECHNOLOGYNANOTECHNOLOGY
NANOTECHNOLOGY
 
Nano-electronics
Nano-electronicsNano-electronics
Nano-electronics
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
Nanoelectronics Final
Nanoelectronics FinalNanoelectronics Final
Nanoelectronics Final
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
Nanotechnology And Its Applications
Nanotechnology And Its ApplicationsNanotechnology And Its Applications
Nanotechnology And Its Applications
 
Nanotechnology (1)
Nanotechnology (1)Nanotechnology (1)
Nanotechnology (1)
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
NANOTECHNOLOGY
NANOTECHNOLOGYNANOTECHNOLOGY
NANOTECHNOLOGY
 
Ele cproject final
Ele cproject finalEle cproject final
Ele cproject final
 

Destacado

NJ Future Redevelopment Forum 2017 Goldberg
NJ Future Redevelopment Forum 2017 GoldbergNJ Future Redevelopment Forum 2017 Goldberg
NJ Future Redevelopment Forum 2017 GoldbergNew Jersey Future
 
Cartilla retie
Cartilla retieCartilla retie
Cartilla retieLuz Angela
 
Anexo general del retie vigente actualizado a 2015
Anexo general del retie vigente actualizado a 2015 Anexo general del retie vigente actualizado a 2015
Anexo general del retie vigente actualizado a 2015 Luz Angela
 
NJ Future Redevelopment Forum 2017 Hughes
NJ Future Redevelopment Forum 2017 HughesNJ Future Redevelopment Forum 2017 Hughes
NJ Future Redevelopment Forum 2017 HughesNew Jersey Future
 
Nano technology 0 front
Nano technology 0 frontNano technology 0 front
Nano technology 0 frontRameez Raja
 
Prevenção de Perdas e Danos
Prevenção de Perdas e Danos Prevenção de Perdas e Danos
Prevenção de Perdas e Danos Anderson Stoll
 
NJ Future Redevelopment Forum 2017 Evans
NJ Future Redevelopment Forum 2017 EvansNJ Future Redevelopment Forum 2017 Evans
NJ Future Redevelopment Forum 2017 EvansNew Jersey Future
 
3Com 3C17709
3Com 3C177093Com 3C17709
3Com 3C17709savomir
 
Cartilla de ingles completa todos los grados
Cartilla de ingles completa todos los gradosCartilla de ingles completa todos los grados
Cartilla de ingles completa todos los gradosliceocompartir01
 
Presupuesto construccion-casa-50m22
Presupuesto construccion-casa-50m22Presupuesto construccion-casa-50m22
Presupuesto construccion-casa-50m22jose luis ascacibar
 
02- Editar títulos y agregar contenidos (Profesores)
02- Editar títulos y agregar contenidos (Profesores)02- Editar títulos y agregar contenidos (Profesores)
02- Editar títulos y agregar contenidos (Profesores)siulollitsac
 
Telling the time
Telling the timeTelling the time
Telling the timeAwwaly Boor
 

Destacado (20)

NJ Future Redevelopment Forum 2017 Goldberg
NJ Future Redevelopment Forum 2017 GoldbergNJ Future Redevelopment Forum 2017 Goldberg
NJ Future Redevelopment Forum 2017 Goldberg
 
Diagnostico matematica 3°
Diagnostico matematica 3°Diagnostico matematica 3°
Diagnostico matematica 3°
 
Cartilla retie
Cartilla retieCartilla retie
Cartilla retie
 
Anexo general del retie vigente actualizado a 2015
Anexo general del retie vigente actualizado a 2015 Anexo general del retie vigente actualizado a 2015
Anexo general del retie vigente actualizado a 2015
 
NJ Future Redevelopment Forum 2017 Hughes
NJ Future Redevelopment Forum 2017 HughesNJ Future Redevelopment Forum 2017 Hughes
NJ Future Redevelopment Forum 2017 Hughes
 
Nano technology 0 front
Nano technology 0 frontNano technology 0 front
Nano technology 0 front
 
Prevenção de Perdas e Danos
Prevenção de Perdas e Danos Prevenção de Perdas e Danos
Prevenção de Perdas e Danos
 
NJ Future Redevelopment Forum 2017 Evans
NJ Future Redevelopment Forum 2017 EvansNJ Future Redevelopment Forum 2017 Evans
NJ Future Redevelopment Forum 2017 Evans
 
Core intel
Core intelCore intel
Core intel
 
Ingles 1
Ingles 1Ingles 1
Ingles 1
 
3Com 3C17709
3Com 3C177093Com 3C17709
3Com 3C17709
 
Hotam ibn majah
Hotam ibn majahHotam ibn majah
Hotam ibn majah
 
Cartilla de ingles completa todos los grados
Cartilla de ingles completa todos los gradosCartilla de ingles completa todos los grados
Cartilla de ingles completa todos los grados
 
Presupuesto construccion-casa-50m22
Presupuesto construccion-casa-50m22Presupuesto construccion-casa-50m22
Presupuesto construccion-casa-50m22
 
Minions
MinionsMinions
Minions
 
บทที่1
บทที่1บทที่1
บทที่1
 
02- Editar títulos y agregar contenidos (Profesores)
02- Editar títulos y agregar contenidos (Profesores)02- Editar títulos y agregar contenidos (Profesores)
02- Editar títulos y agregar contenidos (Profesores)
 
Our film pitch
Our film pitchOur film pitch
Our film pitch
 
Telling the time
Telling the timeTelling the time
Telling the time
 
บทที่ 2
บทที่ 2บทที่ 2
บทที่ 2
 

Similar a Nano technology 7 smnr report

Nanotechnology
NanotechnologyNanotechnology
NanotechnologyA1289k
 
Nanotechnology overview final
Nanotechnology overview finalNanotechnology overview final
Nanotechnology overview finalManoranjan Ghosh
 
Overview on nanotechnology in food applications
Overview on nanotechnology in food applicationsOverview on nanotechnology in food applications
Overview on nanotechnology in food applicationsBharathi59577
 
Applications of nanotechnology
Applications of nanotechnology Applications of nanotechnology
Applications of nanotechnology Sarmad Adnan
 
Nanotechnology the Advanced Science
Nanotechnology the Advanced ScienceNanotechnology the Advanced Science
Nanotechnology the Advanced ScienceSubham Preetam
 
Nano electronics- role of nanosensors, pdf file
Nano electronics- role of nanosensors, pdf fileNano electronics- role of nanosensors, pdf file
Nano electronics- role of nanosensors, pdf fileRishu Mishra
 
Nanotechnology by manish myst ssgbcoet
Nanotechnology by manish myst ssgbcoetNanotechnology by manish myst ssgbcoet
Nanotechnology by manish myst ssgbcoetManish Myst
 
Ppt on nano technology by sanjeeva dinesh
Ppt on nano technology by sanjeeva dineshPpt on nano technology by sanjeeva dinesh
Ppt on nano technology by sanjeeva dineshdinesh kumar
 
Nanotechnology & its application (By- Saquib Khan)
Nanotechnology & its application (By- Saquib Khan)Nanotechnology & its application (By- Saquib Khan)
Nanotechnology & its application (By- Saquib Khan)SAQUIB KHAN
 
Introduction of Nanotechnology
Introduction of Nanotechnology Introduction of Nanotechnology
Introduction of Nanotechnology NIKET SURESH POWAR
 

Similar a Nano technology 7 smnr report (20)

Nano tech
Nano techNano tech
Nano tech
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
Nano technology
Nano technologyNano technology
Nano technology
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
Nanotechnology overview final
Nanotechnology overview finalNanotechnology overview final
Nanotechnology overview final
 
Overview on nanotechnology in food applications
Overview on nanotechnology in food applicationsOverview on nanotechnology in food applications
Overview on nanotechnology in food applications
 
Nanaotechnology
NanaotechnologyNanaotechnology
Nanaotechnology
 
Applications of nanotechnology
Applications of nanotechnology Applications of nanotechnology
Applications of nanotechnology
 
VISHAL KUMAR edited
VISHAL  KUMAR editedVISHAL  KUMAR edited
VISHAL KUMAR edited
 
Nanotechnology the Advanced Science
Nanotechnology the Advanced ScienceNanotechnology the Advanced Science
Nanotechnology the Advanced Science
 
Nano vlsi
Nano vlsi Nano vlsi
Nano vlsi
 
Nano electronics- role of nanosensors, pdf file
Nano electronics- role of nanosensors, pdf fileNano electronics- role of nanosensors, pdf file
Nano electronics- role of nanosensors, pdf file
 
Nanotechnology by manish myst ssgbcoet
Nanotechnology by manish myst ssgbcoetNanotechnology by manish myst ssgbcoet
Nanotechnology by manish myst ssgbcoet
 
NANOTECHNOLOGY
NANOTECHNOLOGY NANOTECHNOLOGY
NANOTECHNOLOGY
 
Ppt on nano technology by sanjeeva dinesh
Ppt on nano technology by sanjeeva dineshPpt on nano technology by sanjeeva dinesh
Ppt on nano technology by sanjeeva dinesh
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
Nano technology
Nano technologyNano technology
Nano technology
 
Nanotechnology & its application (By- Saquib Khan)
Nanotechnology & its application (By- Saquib Khan)Nanotechnology & its application (By- Saquib Khan)
Nanotechnology & its application (By- Saquib Khan)
 
Nanotechnology
NanotechnologyNanotechnology
Nanotechnology
 
Introduction of Nanotechnology
Introduction of Nanotechnology Introduction of Nanotechnology
Introduction of Nanotechnology
 

Más de Rameez Raja

Dth 3 acknowledgement
Dth 3 acknowledgementDth 3 acknowledgement
Dth 3 acknowledgementRameez Raja
 
Dth 2certificate
Dth 2certificateDth 2certificate
Dth 2certificateRameez Raja
 
Dth 1 first page dth
Dth 1 first page dthDth 1 first page dth
Dth 1 first page dthRameez Raja
 
Fpg as 9 abstract
Fpg as 9 abstractFpg as 9 abstract
Fpg as 9 abstractRameez Raja
 
Fpg as 7 list of figures
Fpg as 7 list of figuresFpg as 7 list of figures
Fpg as 7 list of figuresRameez Raja
 
Fpg as 3 acknowledgement (2)
Fpg as 3 acknowledgement (2)Fpg as 3 acknowledgement (2)
Fpg as 3 acknowledgement (2)Rameez Raja
 
Fpg as 1 first page
Fpg as 1 first page Fpg as 1 first page
Fpg as 1 first page Rameez Raja
 
Fpg as 5 contents
Fpg as 5 contentsFpg as 5 contents
Fpg as 5 contentsRameez Raja
 
Nano technology 6 abstract
Nano technology 6 abstractNano technology 6 abstract
Nano technology 6 abstractRameez Raja
 
Nano technology 5 list of figures
Nano technology 5 list of figuresNano technology 5 list of figures
Nano technology 5 list of figuresRameez Raja
 
Nano technology 4 contents
Nano technology 4 contentsNano technology 4 contents
Nano technology 4 contentsRameez Raja
 
Nano technology 3 acknowledgement
Nano technology 3 acknowledgementNano technology 3 acknowledgement
Nano technology 3 acknowledgementRameez Raja
 
Nano technology 2 certificate
Nano technology 2 certificateNano technology 2 certificate
Nano technology 2 certificateRameez Raja
 
Nano technology 1 declaration
Nano technology 1 declarationNano technology 1 declaration
Nano technology 1 declarationRameez Raja
 
Camera surveilance presentation 150812044730-lva1-app6891
Camera surveilance presentation 150812044730-lva1-app6891Camera surveilance presentation 150812044730-lva1-app6891
Camera surveilance presentation 150812044730-lva1-app6891Rameez Raja
 
Camera surveilance 7 seminar salman
Camera surveilance 7 seminar salmanCamera surveilance 7 seminar salman
Camera surveilance 7 seminar salmanRameez Raja
 
Camera surveilance 6 list of figures
Camera surveilance 6 list of figuresCamera surveilance 6 list of figures
Camera surveilance 6 list of figuresRameez Raja
 

Más de Rameez Raja (20)

Dth 5 contents
Dth 5 contentsDth 5 contents
Dth 5 contents
 
Dth 4 abstract
Dth 4 abstractDth 4 abstract
Dth 4 abstract
 
Dth 3 acknowledgement
Dth 3 acknowledgementDth 3 acknowledgement
Dth 3 acknowledgement
 
Dth 2certificate
Dth 2certificateDth 2certificate
Dth 2certificate
 
Dth 1 first page dth
Dth 1 first page dthDth 1 first page dth
Dth 1 first page dth
 
Fpg as 11 body
Fpg as 11 bodyFpg as 11 body
Fpg as 11 body
 
Fpg as 9 abstract
Fpg as 9 abstractFpg as 9 abstract
Fpg as 9 abstract
 
Fpg as 7 list of figures
Fpg as 7 list of figuresFpg as 7 list of figures
Fpg as 7 list of figures
 
Fpg as 3 acknowledgement (2)
Fpg as 3 acknowledgement (2)Fpg as 3 acknowledgement (2)
Fpg as 3 acknowledgement (2)
 
Fpg as 1 first page
Fpg as 1 first page Fpg as 1 first page
Fpg as 1 first page
 
Fpg as 5 contents
Fpg as 5 contentsFpg as 5 contents
Fpg as 5 contents
 
Nano technology 6 abstract
Nano technology 6 abstractNano technology 6 abstract
Nano technology 6 abstract
 
Nano technology 5 list of figures
Nano technology 5 list of figuresNano technology 5 list of figures
Nano technology 5 list of figures
 
Nano technology 4 contents
Nano technology 4 contentsNano technology 4 contents
Nano technology 4 contents
 
Nano technology 3 acknowledgement
Nano technology 3 acknowledgementNano technology 3 acknowledgement
Nano technology 3 acknowledgement
 
Nano technology 2 certificate
Nano technology 2 certificateNano technology 2 certificate
Nano technology 2 certificate
 
Nano technology 1 declaration
Nano technology 1 declarationNano technology 1 declaration
Nano technology 1 declaration
 
Camera surveilance presentation 150812044730-lva1-app6891
Camera surveilance presentation 150812044730-lva1-app6891Camera surveilance presentation 150812044730-lva1-app6891
Camera surveilance presentation 150812044730-lva1-app6891
 
Camera surveilance 7 seminar salman
Camera surveilance 7 seminar salmanCamera surveilance 7 seminar salman
Camera surveilance 7 seminar salman
 
Camera surveilance 6 list of figures
Camera surveilance 6 list of figuresCamera surveilance 6 list of figures
Camera surveilance 6 list of figures
 

Último

Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...roncy bisnoi
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfJiananWang21
 
AKTU Computer Networks notes --- Unit 3.pdf
AKTU Computer Networks notes ---  Unit 3.pdfAKTU Computer Networks notes ---  Unit 3.pdf
AKTU Computer Networks notes --- Unit 3.pdfankushspencer015
 
notes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.pptnotes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.pptMsecMca
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...Call Girls in Nagpur High Profile
 
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...SUHANI PANDEY
 
Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)simmis5
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordAsst.prof M.Gokilavani
 
Call Girls Wakad Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Wakad Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Wakad Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Wakad Call Me 7737669865 Budget Friendly No Advance Bookingroncy bisnoi
 
Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01KreezheaRecto
 
Thermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptThermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptDineshKumar4165
 
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...ranjana rawat
 
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptxBSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptxfenichawla
 
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Bookingroncy bisnoi
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfKamal Acharya
 
Bhosari ( Call Girls ) Pune 6297143586 Hot Model With Sexy Bhabi Ready For ...
Bhosari ( Call Girls ) Pune  6297143586  Hot Model With Sexy Bhabi Ready For ...Bhosari ( Call Girls ) Pune  6297143586  Hot Model With Sexy Bhabi Ready For ...
Bhosari ( Call Girls ) Pune 6297143586 Hot Model With Sexy Bhabi Ready For ...tanu pandey
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VDineshKumar4165
 

Último (20)

Water Industry Process Automation & Control Monthly - April 2024
Water Industry Process Automation & Control Monthly - April 2024Water Industry Process Automation & Control Monthly - April 2024
Water Industry Process Automation & Control Monthly - April 2024
 
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
AKTU Computer Networks notes --- Unit 3.pdf
AKTU Computer Networks notes ---  Unit 3.pdfAKTU Computer Networks notes ---  Unit 3.pdf
AKTU Computer Networks notes --- Unit 3.pdf
 
notes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.pptnotes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.ppt
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
 
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
 
Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
 
Call Girls Wakad Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Wakad Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Wakad Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Wakad Call Me 7737669865 Budget Friendly No Advance Booking
 
NFPA 5000 2024 standard .
NFPA 5000 2024 standard                                  .NFPA 5000 2024 standard                                  .
NFPA 5000 2024 standard .
 
Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01
 
Thermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptThermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.ppt
 
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
 
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptxBSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
 
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance BookingCall Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
Call Girls Walvekar Nagar Call Me 7737669865 Budget Friendly No Advance Booking
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
 
Bhosari ( Call Girls ) Pune 6297143586 Hot Model With Sexy Bhabi Ready For ...
Bhosari ( Call Girls ) Pune  6297143586  Hot Model With Sexy Bhabi Ready For ...Bhosari ( Call Girls ) Pune  6297143586  Hot Model With Sexy Bhabi Ready For ...
Bhosari ( Call Girls ) Pune 6297143586 Hot Model With Sexy Bhabi Ready For ...
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
 

Nano technology 7 smnr report

  • 1. NANO TECHNOLOGY Page 1 CHAPTER 1 INTRODUCTION 1. 1 INTRODUCTION “Imagine a world in which microscopic procreating robots are sent into the human body with the mission of NANOTECHNOLOGY detecting cancer cells, disassembling them and sending them out into the bloodstream as a waste products. Since fiction or reality? In 1959, Richard Feynman made a statement “there is a plenty of room at the bottom”. He bought forth-new concept based on study devoted to manipulating smaller and smaller units of matter. Until 1974, the materials were generally investigated at micrometer level, which was known as micro technology. In 1974 the term Nano technology was coined by norio Taniguchi at the university of Tokyo. In 1986, MIT researcher Eric Drexler wrote his much published book “Engine of Creation” which took Nano technology to the stage of general investigations of multiple interests. 1.2 DEFINATION The term Nano is derived from Greek word, which means dwarf. Nano means billionth part. A Nano meter is one NANOTECHNOLOGY billionth of a meter. An atom is approximately one third of Nano meter. We find various definitions for Nano technology. One definition is as follows. “ Nano technology is a branch of engineering that deals with design and manufacture of extremely small electronics circuits and mechanical devices built at molecular level of matter”. The institute of Nano technology in the UK expressed it as “ Science and Technology where dimensions and tolerance in the range of 0.1 Nano meter to 100nm play a critical role”. 1.3 PROPERTIES OF NANOTECHNOLOGY ·Not only miniaturization but change in physical properties NANOTECHNOLOGY · Laws of quantum physics
  • 2. NANO TECHNOLOGY Page 2 ·Metals become harder ·Ceramics become softer ·Composites and alloys of a whole variety possible ·Different interactions with light/other radiation ·New electrical properties ·Novel biological properties Smart materials 1.4 SMART MATERIAL A smart material is one which is capable of detecting a change in its environment and reacts appropriately so as to produce desired results . The reaction may be in terms of change of shape or significant change in its physical property.  Smart materials are;  piezoelectric materials  magnetostrictive materials  Electro rheological fluids and magneto rheological fluids  shape memory alloys Figure 1.4.1: smart material 1.5 MEMS (MICROELECTOMECHANICAL SYSTEMS) MEMS are the acronym for microelectromecanical systems. This is actually a result of ever- continuing pursuit of humankind for miniaturization. “MEMS is a process technology to produce tiny integrated device or system which incorporate mechanical elements such as valves, gears, sensors, actuators along with on-chip microcircuits to fabricate high performing low cost, compact engineering systems”
  • 3. NANO TECHNOLOGY Page 3 CHAPTER 2 TOOLS USED IN NANOTECHNOLOGY 2.1 TOOLS USED IN NANOTECHNOLOGY To manipulate at the atomic level first thing we require is the tool to see and locate the atom. To do so we have various microscopes like Scanning Electron Microscope (SEM), Transmission Electron Microscope(TEM), Atomic Force microscope (AFM). Scanning Tunneling Microscope (STM). The next tool is NANOMANIPULATOR, which eventually helps us feel the individual atoms in the real environment. The third tool is NANOTWEEZERS, The Tweezer structure can be closed with an applied electrical field like a pair of chopsticks to produce a device that grasps and moves molecules or atoms. Figure 2.1.1 : Nanotweezers 2.2 NANO DEVICES 2.1.1 NANOTUBE A Nano tube is a sheet of carbon atoms joined in a pattern of hexagon and rolled into a cylinder. Nano tubes are stronger ,non-reactive and can withstand high temperature .
  • 4. NANO TECHNOLOGY Page 4  Nanotubes are better alternative to silicon component which will pose problems because of continuing miniaturization.  The Nanotube has been used in a computer circuit to make logic circuits.  Electrical properties of SWNT can be used to generate mechanical motion from electrical energy.  The extreme sensitivity of electrical properties to presence of trace elements also enhances their potential as sensors.  Nanotubes can act as bearings, gears and even as pumps and pistons in combination with Fullenes. Figure 2.1.1.1: Nanotube 2.1.2 CARBON NANOTUBE  Carbon Nanotubes are allotropes of carbon with a cylindrical Nanostructure.  They have length-to-diameter ratio of upto 132,000,000:1.  Nanotubes are members of the fullerence structural family. Their name is derived from their long, hollow structure with the walls formed by one-atom-thick sheets of carbon, ca-ed grapheme. Figure 2.1.2.1 : carbon Nanotube
  • 5. NANO TECHNOLOGY Page 5  PROPERTIES  Highest strength to weight ratio, helps in creating light weight spacecrafts.  Easily penetrate membranes such as cell walls. Helps in cancer treatment.  Electrical resistance changes significantly when other molecules attach themselves to the Carbon atoms. Helps in developing sensors that can detect chemical vapours.  APPLICATION  Easton –Bell Sports, Inc. using CNT in making bicycle component.  Zyvex Technologies using CNT for manufacturing of light weight boats.  Replacing transistors from the silicon chips as they are small and emits less heat.  In electric cables and wires.  In solar cells.  In fabrics. 2.1.3 NANORODS (QUANTUM DOTS)  Nano rods are one morphology of Nano scale objects.  Dimensions range from 1-100nm.  They may be synthesized from metals or semiconducting materials.  A combination of ligands act as shape control agents and bond to different facets of the Nano rod with different strengths. This allows different faces of the Nano rod to grow at different rates, producing an elongated object.
  • 6. NANO TECHNOLOGY Page 6 Figure 2.1.3.1: Nano rods  USES  In display technologies, because the reflectivity of the rods can be changed by changing their orientation with an applied electric field.  In microelectromechanical systems(MEMS)  In cancer therapeutics 2.1.4 NANOBOTS  Close to the scale of 10^-9.  Largely in R&D phase.  Nanobots of 1.5 Nanometers across, capable of counting specific molecules in a chemical sample.  Since Nano robots would be microscopic in size, it would probably be necessary for very large numbers of them to work together to perform microscopic and macroscopic tasks.  Capable of replication using environmental resources.
  • 7. NANO TECHNOLOGY Page 7 Figure 2.1.4.1 : Nanobots  APPLICATION  Detection of toxic components in environment.  In drug delivery.  Biomedical instrumentation
  • 8. NANO TECHNOLOGY Page 8 CHAPTER 3 APPROACHES IN NANOTECHNOLOGY 3.1 BOTTOM UP: In the bottom up approach different materials and devices are constructed from molecular components of their own. They chemically assemble themselves by recognizing the molecules of their own breed. Figure 3.1.1: bottom up Examples of molecular self assembly are Watson crick base pairing, Nano-lithoghaphy. Figure 3.1.2: example of bottom up
  • 9. NANO TECHNOLOGY Page 9 3.2 TOP DOWN:  In top down approach Nano objects and materials are created by laager entities without bouncing its atomic reactions usually top down approach is practiced less as compared to the bottom up approach.  Solid-state techniques can also be used to create devices known as Nanoelectromechanical systems or MEMS.  MEMS became practical once they could be fabricated using modified semiconductor device fabrication technologies, normally used to make electronics. Figure 3.2.1: top down 3.3 MATERIALS USED  ZINC OXIDE: Dirt repellent, hydrophobic, cosmetics & stain resistant.  SILVER ION: Healing property.
  • 10. NANO TECHNOLOGY Page 10  GOLD ION: Chip fabrication , drug delivery. 3.4 NANO COMPOSITES They are the type of composite materials with at least one dimension in the range of upto few lines of Nanometer. They posses high plasticity, high resistivity and high diffusibility. They are used in bumoers of cars.
  • 11. NANO TECHNOLOGY Page 11 CHAPTER 4 APPLICATION 4.1 APPLICATION The MEMS technology has found ready use in developing micro sensors for control of manufacturing processes, vehicles, and biomedical systems to micro seismometers for monitoring the earthquake phenomena.  Nano sensors may be integrated into a material at the production stage without distorting it, or they may be incorporated as invisible thin polymer layers on a surface when changes occurs.  Nano electronics will replace microelectronics. The components of these electronics will include molecular mimics, bio molecules and DNA SET’s .Energy may eventually be transmitted in circuits via photons rather than electrons.  We will be able to produce faster and smaller computers.  Besides electronic applications it has vast scope for medicinal applications. We can have machines moving in capillaries clearing clots, stones etc.  Internal bleedings and fractures can be treated. 4.2 NANOTECHNOLOGY IN DRUGS(CANCER)  Provide new options for drug delivery and drug therapies.  Enable drugs to be delivered to precisely the right location in the body and release drug does on a predetermined schedule for optimal treatment.  Attach the drug to a Nano sized carrier.  They become localized at the disease site, i.e cancer tumour.
  • 12. NANO TECHNOLOGY Page 12  Then they release medicine that kills the tumour.  Current treatment is through radiotherapy or chemotherapy.  Nanobots can clear the blockage in arteries. Figure 4.2.1: Nanotechnology in drugs 4.3 NANO TECHNOLOGY IN FABRICS The properties of familiar materials are being changed by manufacturers who are adding Nano-sized components to conventional materials to improve performance. Figure 4.3.1: Nanotechnology in fabrics
  • 13. NANO TECHNOLOGY Page 13 4.4 NANOTECHNOLOGY IN MOBILE  Morph, a Nanotechnology concept device developed by Nokia Research Center (NRC) and the University of Cambridge (UK).  The morph will be super hydrophobic making it extremely dirt repellent.  It will be able to charge itself from available light sources using photovoltaic Nanowire grass covering it’s surface.  Nano scale electronics also allow stretching. Nokia envisage that a Nano scale mesh of fibers will allow our mobile devices to be bent, stretched and folded into any number of conceivable shapes. Figure 4.4.1: Nanotechnology in mobile 4.5 NANOTECHNOLOGY IN ELECTRONICS  Electrodes made from Nanowires enable flat panel displays to be flexible as well as thinner than current flat panel displays.  Nanolithography is used for fabrication of chips.  The transistors are made of Nanowires, that are assembled on glass or thin films of flexible plastic.
  • 14. NANO TECHNOLOGY Page 14  E-paper, displays on sunglasses and map on car windshields. Figure 4.5.1: Nanotechnology in electronics 4.6 NANOTECHNOLOGY IN COMPUTERS The silicon transistors in your computer may be replaced by transistors based on carbon Nanotubes.  A carbon Nanotube is a molecule in form of a hollow cylinder with a diameter of around a Nanometer which consists of pure carbon.  Nanorods is a upcoming technology in the displays techniques due to less consumption of electricity and less heat emission.  Size of microprocessors are reduced to greater extend.  Researchers at North Carolina State University says that growing arrays of magnetic Nanoparticles, called Nanodots.
  • 15. NANO TECHNOLOGY Page 15 Figure 4.6.1: Nanotechnology in computers 4.7 VIRICHIP Using Nanotechnology, researchers have developed a tiny silicon chip that acts like flypaper to trap and help rapidly identify viruses. Called the "ViriChip," the device was developed in a collaborative effort between BioForce Nanosciences Inc. of Ames, Iowa and Iowa's Des Moines University. Figure 4.7.1: virichip
  • 16. NANO TECHNOLOGY Page 16 OTHER USES  Cutting tools made of Nano crystalline materials, such as tungsten carbide, tantalum carbide, and titanium carbide, are more wear and erosion-resistant, and last longer than their conventional counterparts.  Silver Nano crystals have been embedded in bandages to kill bacteria and prevent infection.  Nano particulate-based synthetic bone Formed by manipulating calcium and phosphate at the molecular level.  Aerogels lightest known solid due to good insulating properties is used in space suits and are proposed to use in space craft.
  • 17. NANO TECHNOLOGY Page 17 CHAPTER 5 NANOTECHNOLOGY IN INDIA 5.1 NANOTECHNOLOGY IN INDIA IIT Mumbai is the premier organization in the field of Nanotechnology. Research in the field of health, environment, medicines are still on. Starting in 2001 the Government of India launched the Nano Science and Technology Initiative(NSTI). Then in 2007 the Nano science and Technology Mission 2007 was initiated with an allocation of Rupees 1000 corers for a period of five years. The main objectives of the Nano Mission are:  Basic research promotion,  Infrastructure development for carrying out front-ranking research,  Development of Nano technologies and their applications,  Human resource development and  International collaborations.
  • 18. NANO TECHNOLOGY Page 18 Figure 5.1.1: IIT Mumbai project 5.2 POSSIBILITIES FOR THE FUTURE  Nanotechnology may make it possible to manufacture lighter, stronger , programmable materials that Require less energy to produce than conventional material And that promise greater fuel efficiency in land transportation, ships, aircraft and space vehicles.  The future of Nanotechnology could very well include the use of Nano robotics.  The Nano robots have the potential to taken on human tasks as well as tasks that humans could never complete. The rebuilding of the depleted ozone layer could potentially be able to performed.  There would be an entire Nano surgical field to help cure everything from natural aging to diabetes to bone spurs.  There would be almost nothing that couldn’t be repaired (eventually) with the introduction of Nano surgery.
  • 19. NANO TECHNOLOGY Page 19 Figure 5.2.1: Nano surgery 5.3 PITFALLS OF NANOTECHNOLOGY Nano-particles can get into the body through the skin, lungs and digestive system, thus creating free radicals that can cause cell damage. Once Nano-particles are in the bloodstream, they will be able to cross the blood-brain barrier. The most dangerous Nano-application use for military purpose is the Nano-bomb that contain engineered self multiplying deadly viruses that can continue to wipe out a community, country or even a civilization. Nanobots because of their replicating behavior can be big threat for GRAY GOO. 6. RISKS FACTORS  Economic disruption from an abundance of cheap products .  Economic oppression from artificially inflated prices .  Social disruption from new products and lifestyles .  Collected environmental damage from unregulated products.
  • 20. NANO TECHNOLOGY Page 20 CONCLUSION Nanotechnology is an umbrella term that covers many areas of research. Nanotechnology enables us to do radical things in virtually every technological and scientific arena. It will also changes things in unpredictable and unanticipated ways. As a conclusion to this topic I would like to say that Nanotechnology is a brand new technology that has just began, it is a revolutionary science that will change all what we knew before. The future that we were watching just in science fiction movies will in the near future be real. This new technology will first of all, keep us healthy because of nanorobots that will repair every damage that we have in our body.Secondly it will give scientists the ability to manipulate the combination of atoms in an object and to turn it into a lighter, stronger, and more durable object than before, just by using carbon nanotubes that are known to be a hundred times stronger than steel and in addition to that they are very flexible. That will lead to the creation of objects that can change their forms and have multiple purposes as the Nokia Morph for example which is a prototype that will soon be out on the market. Thirdly, Nanotechnology will give us an abundant energy because it will transform energy more effectively, for example windmills which are known to have the ability to transform wind energy into electrical energy, well new windmills that will use Nanotechnology will have lighter and stronger blades (using carbon nanotubes) that will transform a lot more energy thanbefore. Nanotechnology covers a lot of domains today and will cover a lot more in the near future, it is infinitely big and will make a lot of inventions come true like teleportation for example which scintists are working on today.
  • 21. NANO TECHNOLOGY Page 21 REFERENCES 1. http://www.crnano.org/whatis.htm 2. http://www.nano.gov/nanotech-101/what/definition 3. http://www.nanowerk.com/nanotechnology/introduction/introduction_to_nanotechnol ogy_1.php 4. http://iopscience.iop.org/journal/0957- 4484;jsessionid=E2DCBF9615388BF7F916B98119097491.ip-10-40-1-98 5. http://www.nanotech-now.com/ https://www.foresight.org/nano/ 6. http://www.nature.com/nnano/index.html