Principles Of Molecular Photochemistry: An Introduction.mobi
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Principles Of Molecular Photochemistry: An Introduction - A Review
Photochemistry is the study of how light interacts with matter and causes chemical reactions. Photophysics is the study of how light affects the physical properties of matter. Both fields are essential for understanding many natural and technological phenomena, such as photosynthesis, solar energy conversion, fluorescence, lasers, and photodynamic therapy.
Principles Of Molecular Photochemistry: An Introduction is a textbook that aims to provide a comprehensive and accessible introduction to the fundamental concepts and applications of photochemistry and photophysics. The book is written by three renowned experts in the field: Nicholas J. Turro, V. Ramamurthy, and J.C. Scaiano[^2^]. It is based on Turro's previous best-selling book Modern Molecular Photochemistry, but updated with the latest developments and insights.
The book consists of 12 chapters that cover topics such as electronic structure and spectroscopy, electronic spin and its impact on photochemical and photophysical processes, energy transfer and electron transfer mechanisms, photochemical reactions of organic molecules, supramolecular photochemistry, photochemistry in restricted environments, and photochemical applications in biology, materials science, and nanoscience. Each chapter includes numerous examples, exercises, references, and suggestions for further reading.
The book adopts a simple and intuitive paradigm that relates the photon and a reactant molecular structure to photochemistry and photophysics through the structure and dynamics of electronically excited states, reactive intermediates, and products. The book uses clear and pictorial descriptions that can be easily understood by students and applied to systems of interest. The book also emphasizes the importance of experimental techniques and methods for investigating photochemical and photophysical phenomena.
Principles Of Molecular Photochemistry: An Introduction is an ideal textbook for undergraduate and graduate students who want to learn the basics of photochemistry and photophysics. It is also a valuable reference for researchers and practitioners who use photochemistry and photophysics in their work. The book is available in both print[^2^] [^3^] [^4^] and ebook[^2^] formats.
One of the main features of the book is the introduction of electronic spin and its role in photochemistry and photophysics. Electronic spin is a quantum mechanical property that affects the behavior and interactions of molecules in excited states. The book explains how to use a vector model to visualize and understand the effects of spin on photochemical and photophysical processes, such as intersystem crossing, phosphorescence, singlet oxygen generation, and magnetic field effects.
Another feature of the book is the unified treatment of electronic energy transfer and electron transfer processes. Energy transfer and electron transfer are two fundamental ways of transferring energy or charge between molecules in excited states. The book describes the common principles and factors that govern both types of processes, such as distance dependence, orientation factor, overlap integral, and driving force. The book also covers the recent advances and challenges in theoretical and experimental studies of energy transfer and electron transfer.
The book also provides a wide range of examples and applications of photochemistry and photophysics in various fields of science and technology. The book illustrates how photochemistry and photophysics can be used to create novel molecular structures, materials, devices, and functions. Some of the topics covered include photochromism, photoreactivity, photopolymerization, photosensitization, photovoltaic cells, light-emitting diodes, molecular machines, nanomaterials, biomolecules, and biological systems. 061ffe29dd