Description

This volume provides a non-mathematical introduction to electronic excitation in organic molecules and their spectroscopy, photophysics, and photochemistry.

Simple qualitative models, such as the perimeter model, are used to describe the nature of electronic states, and this book reveals how these states are probed by spectroscopy with ordinary and polarized light, including natural and magnetic circular dichroism. The concept of potential energy surfaces is emphasized in discussing the photophysical processes and photochemical reactions that follow excitation. Particular attention is paid to the behavior of molecules at biradicaloid geometries and spin-orbit coupling in biradicals.

Simple intuitive models for electronic structure and reactivity are emphasized, and practical application of theory is illustrated through numerous worked examples.

Excited States and Photo-Chemistry of Organic Molecules

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Hardback by Martin Klessinger , Josef Michl

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This volume provides a non-mathematical introduction to electronic excitation in organic molecules and their spectroscopy, photophysics, and photochemistry. Simple qualitative... Read more

    Publisher: John Wiley & Sons Inc
    Publication Date: 06/09/1995
    ISBN13: 9780471185765, 978-0471185765
    ISBN10: 0471185760

    Number of Pages: 564

    Non Fiction , Mathematics & Science , Education

    Description

    This volume provides a non-mathematical introduction to electronic excitation in organic molecules and their spectroscopy, photophysics, and photochemistry.

    Simple qualitative models, such as the perimeter model, are used to describe the nature of electronic states, and this book reveals how these states are probed by spectroscopy with ordinary and polarized light, including natural and magnetic circular dichroism. The concept of potential energy surfaces is emphasized in discussing the photophysical processes and photochemical reactions that follow excitation. Particular attention is paid to the behavior of molecules at biradicaloid geometries and spin-orbit coupling in biradicals.

    Simple intuitive models for electronic structure and reactivity are emphasized, and practical application of theory is illustrated through numerous worked examples.

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