Electronic and Atomic Structure and Dynamics of Electrode Electrolyte Interfaces by Computer Simulation

Electronic and Atomic Structure and Dynamics of Electrode Electrolyte Interfaces by Computer Simulation
Title Electronic and Atomic Structure and Dynamics of Electrode Electrolyte Interfaces by Computer Simulation PDF eBook
Author Sean Michael Walbran
Publisher
Pages 190
Release 1999
Genre
ISBN

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Atomic-Scale Modelling of Electrochemical Systems

Atomic-Scale Modelling of Electrochemical Systems
Title Atomic-Scale Modelling of Electrochemical Systems PDF eBook
Author Marko M. Melander
Publisher John Wiley & Sons
Pages 372
Release 2021-09-09
Genre Science
ISBN 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.

Dissertation Abstracts International

Dissertation Abstracts International
Title Dissertation Abstracts International PDF eBook
Author
Publisher
Pages 604
Release 1999
Genre Dissertations, Academic
ISBN

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 704
Release 1995
Genre Aeronautics
ISBN

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Proceedings of the Symposium on Microscopic Models of Electrode- Electrolyte Interfaces

Proceedings of the Symposium on Microscopic Models of Electrode- Electrolyte Interfaces
Title Proceedings of the Symposium on Microscopic Models of Electrode- Electrolyte Interfaces PDF eBook
Author Electrochemical Society. Corrosion Division
Publisher The Electrochemical Society
Pages 362
Release 1993
Genre Science
ISBN 9781566770521

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Multiscale Simulations for Electrochemical Devices

Multiscale Simulations for Electrochemical Devices
Title Multiscale Simulations for Electrochemical Devices PDF eBook
Author Ryoji Asahi
Publisher CRC Press
Pages 232
Release 2020-01-03
Genre Science
ISBN 1000021793

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Environmental protection and sustainability are major concerns in today’s world, and a reduction in CO2 emission and the implementation of clean energy are inevitable challenges for scientists and engineers today. The development of electrochemical devices, such as fuel cells, Li-ion batteries, and artificial photosynthesis, is vital for solving environmental problems. A practical device requires designing of materials and operational systems; however, a multidisciplinary subject covering microscopic physics and chemistry as well as macroscopic device properties is absent. In this situation, multiscale simulations play an important role. This book compiles and details cutting-edge research and development of atomistic, nanoscale, microscale, and macroscale computational modeling for various electrochemical devices, including hydrogen storage, Li-ion batteries, fuel cells, and artificial photocatalysis. The authors have been involved in the development of energy materials and devices for many years. In each chapter, after reviewing the calculation methods commonly used in the field, the authors focus on a specific computational approach that is applied to a realistic problem crucial for device improvement. They introduce the simulation technique not only as an analysis tool to explain experimental results but also as a design tool in the scale of interest. At the end of each chapter, a future perspective is added as a guide for the extension of research. Therefore, this book is suitable as a textbook or a reference on multiscale simulations and will appeal to anyone interested in learning practical simulations and applying them to problems in the development of frontier and futuristic electrochemical devices.

Computational Electrochemistry

Computational Electrochemistry
Title Computational Electrochemistry PDF eBook
Author S. Paddison
Publisher The Electrochemical Society
Pages 49
Release 2015-12-28
Genre Science
ISBN 1607686511

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