Likhtenshtein G. Enzyme Catalysis Today...the Chemistry of the 21st Century 2025
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Likhtenshtein G. Enzyme Catalysis Today...the Chemistry of the 21st Century 2025
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This book examines enzymatic reactions from the standpoint of physical chemistry. An introductory chapter gives a brief overview of the role of enzymes in metabolism, biotechnology and medicine, while describing the framework for chemical mimicry of enzyme reactions. Subsequent chapters of the book are devoted to a general overview of vital enzyme processes, methods of enzyme kinetic reactions, the theory of elementary mechanisms, oriental, dynamic and polar factors affecting enzyme catalysts, as well as the current status and prospects of enzyme chemical modeling. The book gives particular attention to chemical reactions highly important in modern research efforts, such as the conversion of light energy into chemical energy with a high quantum yield, photooxidation of water, reduction of atmospheric nitrogen, and utilization of carbon dioxide in ambient conditions. The book is intended for scientists working on enzyme catalysis and the adjacent areas such as chemical modeling of biological processes, homogeneous catalysis, biomedical research, biotechnology and bioengineering. In addition, it can serve as secondary instructional material for graduate and undergraduate students of chemistry, medicine, biochemistry, biophysics, biophysiology, and bioengineering.
Enzymatic Processes as a Basis for the Creation of Advanced Chemical Catalysts
Methods of Analysis in Enzyme Processes
Methods of Enzyme Kinetics
Elementary Mechanisms of Enzyme Reactions (Part 1)
Enzymes Mechanisms. (Part 2) Radical Processes
Multielectron Redox Mechanisms
Molecular Dynamics of Proteins and Their Functional Activity
Enthalpy–Entropy Relationships in Enzyme Reactions
Artificial and Nanoenzymes
Artificial Photosynthesis
Modeling Nonhemin Iron Proteins and Enzymes
Artificial Hydroxylases and Hydrolases
Miscellaneous Biomimetic Processes