Principles And Applications Of Photochemistry
Short description/annotation:
Principles and Applications of Photochemistry provides a modern introduction to photochemistry, which starts by covering the principles, and then moves on to cover the applications. The many and varied applications are drawn from such diverse subjects as lasers, the atmosphere, biochemistry, medicine and industry.
Description:
A modern introduction to photochemistry covering the principles and applications of this topic from both a physical chemistry and organic chemistry angle. Coverage ranges from subjects such as lasers, the atmosphere, biochemistry, medicine and industry and also includes the latest developments in relation to photochemical molecular machines, photodynamic therapy applied to cancer, photochromatic imaging, and photostabilizers. Little in the way of prior knowledge is assumed, and the reader is aided by numerous worked examples, learning objectives, chapter summaries and problems.
Description:
Die moderne Photochemie ist ein interdisziplinares Wissensgebiet mit Beitragen aus der (organischen und anorganischen) Strukturchemie ebenso wie aus der Physik der Wechselwirkung zwischen Strahlung und Materie. Ihre Anwendungsspektrum erstreckt sich von der Medizin und Biochemie bis zur Atmospharenforschung. Dem tragt der vorliegende Band Rechnung: Theoretische Grundlagen werden erklart und anhand vieler Beispiele und Aufgaben aus verschiedenen Fachrichtungen geubt. Zu den besprochenen aktuellen Anwendungen gehoren photochemische molekulare Maschinen, die photodynamische Lasertherapie, photochromatische Abbildungsverfahren, Photostabilisatoren und andere spannende Themen.
Table of contents:
Preface xiii
1 Introductory Concepts 1
Aims and Objectives 1
1.1 The Quantum Nature of Matter and Light 2
1.2 Modelling Atoms: Atomic Orbitals 6
1.3 Modelling Molecules: Molecular Orbitals 9
1.4 Modelling Molecules: Electronic States 13
1.5 Light Sources Used in Photochemistry 16
1.6 Efficiency of Photochemical Processes: Quantum Yield 25
2 Light Absorption and Electronically-excited States 29
Aims and Objectives 29
2.1 Introduction 29
2.2 The Beer–Lambert Law 30
2.3 The Physical Basis of Light Absorption by Molecules 32
2.4 Absorption of Light by Organic Molecules 35
2.5 Linearly-conjugated Molecules 39
2.6 Some Selection Rules 42
2.7 Absorption of Light by Inorganic Complexes 43
3 The Physical Deactivation of Excited States 47
Aims and Objectives 47
3.1 Introduction 47
3.2 Jablonski Diagrams 49
3.3 Excited-state Lifetimes 53
4 Radiative Processes of Excited States 59
Aims and Objectives 59
4.1 Introduction 60
4.2 Fluorescence and Fluorescence Spectra 61
4.3 An Exception to Kasha’s Rule 63
4.4 Fluorescence Quantum Yield 64
4.5 Factors Contributing to Fluorescence Behaviour 65
4.6 Molecular Fluorescence in Analytical Chemistry 67
4.7 Phosphorescence 70
4.8 Delayed Fluorescence 73
4.9 Lanthanide Luminescence 74
5 Intramolecular Radiationless Transitions of Excited States 77
Aims and Objectives 77
5.1 Introduction 77
5.2 The Energy Gap Law 79
5.3 The Franck–Condon Factor 79
5.4 Heavy Atom Effects on Intersystem Crossing 82
5.5 El-Sayed’s Selection Rules for Intersystem Crosssing 83
6 Intermolecular Physical Processes of Excited States 87
Aims and Objectives 87
6.1 Quenching Processes 88
6.2 Excimers 90
6.3 Exciplexes 93
6.4 Intermolecular Electronic Energy Transfer 96
6.5 The Trivial or Radiative Mechanism of Energy Transfer 97
6.6 Long-range Dipole–Dipole (Coulombic) Energy Transfer 98
6.7 Short-range Electron-exchange Energy Transfer 105
6.8 Photoinduce
| Author | By (author) Wardle Brian |
|---|---|
| Date Of Publication | Dec 11, 2009 |
| EAN | 9780470014943 |
| Contributors | Wardle Brian |
| Publisher | John Wiley & Sons Inc |
| Languages | English |
| Country of Publication | United States |
| Width | 153 mm |
| Height | 228 mm |
| Thickness | 15 mm |
| Product Forms | Paperback / Softback |
| Weight | 0.397000 |