SlideShare una empresa de Scribd logo
1 de 18
Organic Photochemistry ,[object Object],[object Object],[object Object]
 
Energies 100 kcal/mol= 4.3 eV= 286 nm= 35000 /cm (near UV) nano= 10-9 286 kcal/mol= 12.4 eV= 100 nm= 100000 /cm (far UV) Typical Bond Energies C-H = 110 kcal/mol C-C = 80 C=C = 150 C=O = 170 Uv light 150 -40 nm wavelength, so this is sufficient energy to break bonds –knock electrons out of bonding orbitals (electronic excitation).
 
 
A Jablonski diagram, named after the Polish physicist AleksanderJabłoński, is a  diagram that illustrates the electronic states of a molecule and the transitions  between them.  The states are arranged vertically by energy and grouped horizontally by spin  multiplicity.  Radiative transitions are indicated by straight arrows and nonradiative transitions  by squiggly arrows. The vibrational ground states of each electronic state are indicated with thick  lines, the higher rotational states with thinner lines.
 
Physical Processes Undergone by Excited Molecules ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Why Use Photochemistry ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Chemical Processes undergone by Excited Molecules
[object Object]
[object Object]
[object Object]
 
 
 
 
 

Más contenido relacionado

La actualidad más candente

La actualidad más candente (20)

Reaction mechanisms
Reaction mechanismsReaction mechanisms
Reaction mechanisms
 
4. Wilkinson's Catalyst
4. Wilkinson's Catalyst4. Wilkinson's Catalyst
4. Wilkinson's Catalyst
 
Non-equilibrium Thermodynamics
Non-equilibrium ThermodynamicsNon-equilibrium Thermodynamics
Non-equilibrium Thermodynamics
 
Rearrangement
RearrangementRearrangement
Rearrangement
 
Katsuki Sharpless Asymmetric Epoxidation and its Synthetic Applications
Katsuki Sharpless Asymmetric Epoxidation and its Synthetic ApplicationsKatsuki Sharpless Asymmetric Epoxidation and its Synthetic Applications
Katsuki Sharpless Asymmetric Epoxidation and its Synthetic Applications
 
Photochemistry
PhotochemistryPhotochemistry
Photochemistry
 
Photochemistry PPT.pptx
Photochemistry PPT.pptxPhotochemistry PPT.pptx
Photochemistry PPT.pptx
 
Mossbauer spectroscopy - Principles and applications
Mossbauer spectroscopy - Principles and applicationsMossbauer spectroscopy - Principles and applications
Mossbauer spectroscopy - Principles and applications
 
SMILES REARRANGEMENT [REACTION AND MECHANISM]
SMILES REARRANGEMENT [REACTION AND MECHANISM]SMILES REARRANGEMENT [REACTION AND MECHANISM]
SMILES REARRANGEMENT [REACTION AND MECHANISM]
 
Metal alkene complexes.ppt
Metal alkene complexes.pptMetal alkene complexes.ppt
Metal alkene complexes.ppt
 
Photochemistry
PhotochemistryPhotochemistry
Photochemistry
 
Photochemical reactions
Photochemical reactionsPhotochemical reactions
Photochemical reactions
 
Photo fries rearrangement
Photo fries rearrangementPhoto fries rearrangement
Photo fries rearrangement
 
Paterno buchi reaction
Paterno buchi reactionPaterno buchi reaction
Paterno buchi reaction
 
Electrophilic Substitution Reaction
Electrophilic Substitution ReactionElectrophilic Substitution Reaction
Electrophilic Substitution Reaction
 
ARENIUM ION.pptx
ARENIUM ION.pptxARENIUM ION.pptx
ARENIUM ION.pptx
 
Organosilicon compounds
Organosilicon compoundsOrganosilicon compounds
Organosilicon compounds
 
Electrocyclic reactions
Electrocyclic reactionsElectrocyclic reactions
Electrocyclic reactions
 
Molecular Rearrangements of Organic Reactions pps
Molecular Rearrangements of Organic Reactions ppsMolecular Rearrangements of Organic Reactions pps
Molecular Rearrangements of Organic Reactions pps
 
Nuclear overhauser effect
Nuclear overhauser effectNuclear overhauser effect
Nuclear overhauser effect
 

Similar a Photochemistry

UV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdf
UV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdfUV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdf
UV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdf
ccgfffc1
 

Similar a Photochemistry (20)

Lecture2&3.pdf
Lecture2&3.pdfLecture2&3.pdf
Lecture2&3.pdf
 
Theory of uv spectrophotometer
Theory of uv spectrophotometerTheory of uv spectrophotometer
Theory of uv spectrophotometer
 
Visible and ultraviolet spectroscopy
Visible and ultraviolet spectroscopyVisible and ultraviolet spectroscopy
Visible and ultraviolet spectroscopy
 
chemical kinetics.pdf
chemical kinetics.pdfchemical kinetics.pdf
chemical kinetics.pdf
 
UV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdf
UV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdfUV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdf
UV-Vis molecular absorption spectroscopy- BSc-Lect 5.pdf
 
Dinkars presentation on potochemistry.
Dinkars presentation on potochemistry.Dinkars presentation on potochemistry.
Dinkars presentation on potochemistry.
 
CY1001D full ppt.pdf
CY1001D full ppt.pdfCY1001D full ppt.pdf
CY1001D full ppt.pdf
 
electrochemistry
 electrochemistry electrochemistry
electrochemistry
 
Spectroscopy Org12
Spectroscopy Org12Spectroscopy Org12
Spectroscopy Org12
 
lecture 1.pptx
lecture 1.pptxlecture 1.pptx
lecture 1.pptx
 
Uv spectroscopy
Uv spectroscopy Uv spectroscopy
Uv spectroscopy
 
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, BiofulesLectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
Lectures 7-8: Charge and Energy Transfer, Photosynthesis, Biofules
 
Ultraviolet spetroscopy by Dr. Monika Singh part-1 as per PCI syllabus
Ultraviolet spetroscopy by Dr. Monika Singh part-1 as per PCI syllabusUltraviolet spetroscopy by Dr. Monika Singh part-1 as per PCI syllabus
Ultraviolet spetroscopy by Dr. Monika Singh part-1 as per PCI syllabus
 
IR spectroscopy . P.K.Mani, BCKV, West Bengal, India
IR spectroscopy . P.K.Mani, BCKV, West Bengal,  IndiaIR spectroscopy . P.K.Mani, BCKV, West Bengal,  India
IR spectroscopy . P.K.Mani, BCKV, West Bengal, India
 
UV spectroscopy, Electronic transitions, law of UV, Deviations of UV, chromop...
UV spectroscopy, Electronic transitions, law of UV, Deviations of UV, chromop...UV spectroscopy, Electronic transitions, law of UV, Deviations of UV, chromop...
UV spectroscopy, Electronic transitions, law of UV, Deviations of UV, chromop...
 
UV spectroscopy
UV spectroscopyUV spectroscopy
UV spectroscopy
 
Uv visible spectroscopy
Uv visible spectroscopyUv visible spectroscopy
Uv visible spectroscopy
 
UV / Visible Spectroscopy
UV / Visible SpectroscopyUV / Visible Spectroscopy
UV / Visible Spectroscopy
 
421-821-chapter-25.ppt
421-821-chapter-25.ppt421-821-chapter-25.ppt
421-821-chapter-25.ppt
 
Electrochemistry
ElectrochemistryElectrochemistry
Electrochemistry
 

Último

Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo DiehlFuture Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Peter Udo Diehl
 

Último (20)

Secure Zero Touch enabled Edge compute with Dell NativeEdge via FDO _ Brad at...
Secure Zero Touch enabled Edge compute with Dell NativeEdge via FDO _ Brad at...Secure Zero Touch enabled Edge compute with Dell NativeEdge via FDO _ Brad at...
Secure Zero Touch enabled Edge compute with Dell NativeEdge via FDO _ Brad at...
 
Salesforce Adoption – Metrics, Methods, and Motivation, Antone Kom
Salesforce Adoption – Metrics, Methods, and Motivation, Antone KomSalesforce Adoption – Metrics, Methods, and Motivation, Antone Kom
Salesforce Adoption – Metrics, Methods, and Motivation, Antone Kom
 
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
Behind the Scenes From the Manager's Chair: Decoding the Secrets of Successfu...
 
Oauth 2.0 Introduction and Flows with MuleSoft
Oauth 2.0 Introduction and Flows with MuleSoftOauth 2.0 Introduction and Flows with MuleSoft
Oauth 2.0 Introduction and Flows with MuleSoft
 
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo DiehlFuture Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
Future Visions: Predictions to Guide and Time Tech Innovation, Peter Udo Diehl
 
ECS 2024 Teams Premium - Pretty Secure
ECS 2024   Teams Premium - Pretty SecureECS 2024   Teams Premium - Pretty Secure
ECS 2024 Teams Premium - Pretty Secure
 
Introduction to FDO and How It works Applications _ Richard at FIDO Alliance.pdf
Introduction to FDO and How It works Applications _ Richard at FIDO Alliance.pdfIntroduction to FDO and How It works Applications _ Richard at FIDO Alliance.pdf
Introduction to FDO and How It works Applications _ Richard at FIDO Alliance.pdf
 
IESVE for Early Stage Design and Planning
IESVE for Early Stage Design and PlanningIESVE for Early Stage Design and Planning
IESVE for Early Stage Design and Planning
 
THE BEST IPTV in GERMANY for 2024: IPTVreel
THE BEST IPTV in  GERMANY for 2024: IPTVreelTHE BEST IPTV in  GERMANY for 2024: IPTVreel
THE BEST IPTV in GERMANY for 2024: IPTVreel
 
Syngulon - Selection technology May 2024.pdf
Syngulon - Selection technology May 2024.pdfSyngulon - Selection technology May 2024.pdf
Syngulon - Selection technology May 2024.pdf
 
Demystifying gRPC in .Net by John Staveley
Demystifying gRPC in .Net by John StaveleyDemystifying gRPC in .Net by John Staveley
Demystifying gRPC in .Net by John Staveley
 
Linux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdf
Linux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdfLinux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdf
Linux Foundation Edge _ Overview of FDO Software Components _ Randy at Intel.pdf
 
Enterprise Knowledge Graphs - Data Summit 2024
Enterprise Knowledge Graphs - Data Summit 2024Enterprise Knowledge Graphs - Data Summit 2024
Enterprise Knowledge Graphs - Data Summit 2024
 
AI revolution and Salesforce, Jiří Karpíšek
AI revolution and Salesforce, Jiří KarpíšekAI revolution and Salesforce, Jiří Karpíšek
AI revolution and Salesforce, Jiří Karpíšek
 
Where to Learn More About FDO _ Richard at FIDO Alliance.pdf
Where to Learn More About FDO _ Richard at FIDO Alliance.pdfWhere to Learn More About FDO _ Richard at FIDO Alliance.pdf
Where to Learn More About FDO _ Richard at FIDO Alliance.pdf
 
IoT Analytics Company Presentation May 2024
IoT Analytics Company Presentation May 2024IoT Analytics Company Presentation May 2024
IoT Analytics Company Presentation May 2024
 
Free and Effective: Making Flows Publicly Accessible, Yumi Ibrahimzade
Free and Effective: Making Flows Publicly Accessible, Yumi IbrahimzadeFree and Effective: Making Flows Publicly Accessible, Yumi Ibrahimzade
Free and Effective: Making Flows Publicly Accessible, Yumi Ibrahimzade
 
How Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdf
How Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdfHow Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdf
How Red Hat Uses FDO in Device Lifecycle _ Costin and Vitaliy at Red Hat.pdf
 
Measures in SQL (a talk at SF Distributed Systems meetup, 2024-05-22)
Measures in SQL (a talk at SF Distributed Systems meetup, 2024-05-22)Measures in SQL (a talk at SF Distributed Systems meetup, 2024-05-22)
Measures in SQL (a talk at SF Distributed Systems meetup, 2024-05-22)
 
Designing for Hardware Accessibility at Comcast
Designing for Hardware Accessibility at ComcastDesigning for Hardware Accessibility at Comcast
Designing for Hardware Accessibility at Comcast
 

Photochemistry

  • 1.
  • 2.  
  • 3. Energies 100 kcal/mol= 4.3 eV= 286 nm= 35000 /cm (near UV) nano= 10-9 286 kcal/mol= 12.4 eV= 100 nm= 100000 /cm (far UV) Typical Bond Energies C-H = 110 kcal/mol C-C = 80 C=C = 150 C=O = 170 Uv light 150 -40 nm wavelength, so this is sufficient energy to break bonds –knock electrons out of bonding orbitals (electronic excitation).
  • 4.  
  • 5.  
  • 6. A Jablonski diagram, named after the Polish physicist AleksanderJabłoński, is a diagram that illustrates the electronic states of a molecule and the transitions between them. The states are arranged vertically by energy and grouped horizontally by spin multiplicity. Radiative transitions are indicated by straight arrows and nonradiative transitions by squiggly arrows. The vibrational ground states of each electronic state are indicated with thick lines, the higher rotational states with thinner lines.
  • 7.  
  • 8.
  • 9.
  • 10. Chemical Processes undergone by Excited Molecules
  • 11.
  • 12.
  • 13.
  • 14.  
  • 15.  
  • 16.  
  • 17.  
  • 18.