Surface Electron Transfer Processes

Surface Electron Transfer Processes

Author: R. J. Dwayne Miller

Publisher: Wiley-VCH

Published: 1995-05-26

Total Pages: 0

ISBN-13: 9780471185536

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This book gives an extensive theoretical treatment of surface electron transfer processes. The emphasis is on electronic coupling of molecular potentials to conducting band states. The essential role of surface electron transfer in catalysis, electrochemistry, photo imaging, and virtually all charge transfer solid state devices make this process one of the most important single chemical events. The assumptions in the theories will be highlighted and major emphasis will be placed on the unknown nature of the electronic coupling. This latter point is the driving force for current experiments in the area. The chapter on theory will form the cornerstone for the chapters covering experimental findings on surface processes. The book will be written in a fashion so as to be useful as a text book, yet emphasize the challenges that remain ahead in understanding electron tunneling phenomena. The book is written in a tutorial fashion at a level suitable for graduate students with little background in the area.


Atomic-Scale Modelling of Electrochemical Systems

Atomic-Scale Modelling of Electrochemical Systems

Author: Marko M. Melander

Publisher: John Wiley & Sons

Published: 2021-09-09

Total Pages: 372

ISBN-13: 1119605636

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Atomic-Scale Modelling of Electrochemical Systems A comprehensive overview of atomistic computational electrochemistry, discussing methods, implementation, and state-of-the-art applications in the field The first book to review state-of-the-art computational and theoretical methods for modelling, understanding, and predicting the properties of electrochemical interfaces. This book presents a detailed description of the current methods, their background, limitations, and use for addressing the electrochemical interface and reactions. It also highlights several applications in electrocatalysis and electrochemistry. Atomic-Scale Modelling of Electrochemical Systems discusses different ways of including the electrode potential in the computational setup and fixed potential calculations within the framework of grand canonical density functional theory. It examines classical and quantum mechanical models for the solid-liquid interface and formation of an electrochemical double-layer using molecular dynamics and/or continuum descriptions. A thermodynamic description of the interface and reactions taking place at the interface as a function of the electrode potential is provided, as are novel ways to describe rates of heterogeneous electron transfer, proton-coupled electron transfer, and other electrocatalytic reactions. The book also covers multiscale modelling, where atomic level information is used for predicting experimental observables to enable direct comparison with experiments, to rationalize experimental results, and to predict the following electrochemical performance. Uniquely explains how to understand, predict, and optimize the properties and reactivity of electrochemical interfaces starting from the atomic scale Uses an engaging “tutorial style” presentation, highlighting a solid physicochemical background, computational implementation, and applications for different methods, including merits and limitations Bridges the gap between experimental electrochemistry and computational atomistic modelling Written by a team of experts within the field of computational electrochemistry and the wider computational condensed matter community, this book serves as an introduction to the subject for readers entering the field of atom-level electrochemical modeling, while also serving as an invaluable reference for advanced practitioners already working in the field.


Electronic Processes At Solid Surfaces

Electronic Processes At Solid Surfaces

Author: E Ilisca

Publisher: World Scientific

Published: 1996-10-28

Total Pages: 371

ISBN-13: 9814501417

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The subject of surface physics has now grown to become an exciting interdisciplinary field of research with important practical applications.The purpose of this book is to provide a guided tour of some recent advances, key research issues and approaches in electronic processes at solid surfaces.Apart from a few structural studies, selected topics have been chosen to illustrate the dynamical response of the solid surface to external probes, with the main emphasis on electron transfer phenomena.


Elementary Processes in Excitations and Reactions on Solid Surfaces

Elementary Processes in Excitations and Reactions on Solid Surfaces

Author: Ayao Okiji

Publisher: Springer Science & Business Media

Published: 1996-09-17

Total Pages: 260

ISBN-13: 9783540615088

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Elementary Processes in Excitations and Reactions on Solid Surfaces explores the fundamental nature of dynamics on solid surfaces. Attempts are made to reveal various aspects of elementary processes in excitations and reactions on solid surfaces by recent theoretical and experimental developments of the subjects such as molecular beams interacting with surfaces, ion beam scattering, laser-induced dynamical processes, electronically induced dynamical processes, and optical properties of solid surfaces. This volume is devided into three parts. Part I is concerned mainly with the rich reaction dynamics on potential-energy surfaces. Part II is devoted to the interplay of excitations and reactions with particular attention given to the charge transfer as well as the energy transfer between well-characterized surfaces and beams. In Part III, new and rapidly developing methods are introduced.