Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications and Synergy with Experimentation
Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications and Synergy with Experimentation
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- More about Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications and Synergy with Experimentation
Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications, and Synergy with Experimental Approaches is a comprehensive guide that discusses photoactive systems and photochemical processes, computational chemistry methods, and the synergy between experimental and computational data. It is useful for theoretical chemists and experimental photochemistry researchers.
Format: Paperback / softback
Length: 500 pages
Publication date: 01 February 2023
Publisher: Elsevier - Health Sciences Division
Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications, and Synergy with Experimental Approaches is a comprehensive resource that delves into the realm of photoactive systems and photochemical processes. After providing an introductory overview of photochemistry, the book explores the diverse computational chemistry methods employed in studying light-induced reactions over the past decade. It then proceeds to outline emerging research areas where these methods have been successfully applied. By emphasizing the interplay between experimental and computational data, the book underscores how theoretical studies can enhance our understanding of experimental findings. This invaluable guide is designed to cater to both theoretical chemists and experimental photochemistry researchers who are interested in leveraging computational photochemistry techniques to advance their own research endeavors.
Photochemistry is a fundamental branch of chemistry that studies the interactions between light and matter. It encompasses a wide range of phenomena, including the absorption, emission, and reaction of molecules and materials with light. Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications, and Synergy with Experimental Approaches provides a comprehensive overview of this field, covering both theoretical and computational aspects.
The book begins with an introduction to photochemistry, providing a basic understanding of the principles and mechanisms involved in light-induced reactions. It then discusses the key computational chemistry methods used to study light-induced processes, such as quantum mechanics, molecular dynamics, and density functional theory. These methods allow researchers to simulate the behavior of molecules and materials under different conditions, providing insights into the mechanisms and kinetics of photochemical reactions.
One of the key strengths of the book is its focus on recent research topics in theoretical and computational photochemistry. It discusses the application of these methods to study a wide range of photochemical reactions, including photosynthesis, energy transfer, photodegradation, and photoredox reactions. The book also highlights the synergy between experimental and computational data, emphasizing how theoretical studies can facilitate understanding of experimental findings.
For both theoretical chemists and experimental photochemistry researchers, this book is an invaluable resource. It provides a comprehensive overview of the field, covering the fundamental principles and methods of photochemistry, as well as the latest research developments. The book's clear and concise writing style makes it accessible to a wide audience, and its extensive references and appendices provide further information for those interested in exploring specific topics in greater detail.
In conclusion, Theoretical and Computational Photochemistry: Fundamentals, Methods, Applications, and Synergy with Experimental Approaches is a must-read for anyone interested in the field of photochemistry. It provides a comprehensive and up-to-date overview of the field, covering both theoretical and computational aspects, and highlights the synergy between experimental and computational data. This book is an invaluable resource for researchers, students, and professionals in chemistry, physics, and materials science.
Dimension: 229 x 152 (mm)
ISBN-13: 9780323917384
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