Handbook Of Solid State Batteries

Author:   Nancy J Dudney (Oak Ridge Nat'l Lab, Usa) ,  William C West (Nagoya Univ, Japan) ,  Jagjit Nanda (Oak Ridge Nat'l Lab, Usa)
Publisher:   World Scientific Publishing Co Pte Ltd
Edition:   Second Edition
Volume:   6
ISBN:  

9789814651899


Pages:   836
Publication Date:   25 August 2015
Format:   Hardback
Availability:   In Print   Availability explained
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Handbook Of Solid State Batteries


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Overview

Solid-state batteries hold the promise of providing energy storage with high volumetric and gravimetric energy densities at high power densities, yet with far less safety issues relative to those associated with conventional liquid or gel-based lithium-ion batteries. Solid-state batteries are envisioned to be useful for a broad spectrum of energy storage applications, including powering automobiles and portable electronic devices, as well as stationary storage and load-leveling of renewably generated energy. This comprehensive handbook covers a wide range of topics related to solid-state batteries, including advanced enabling characterization techniques, fundamentals of solid-state systems, novel solid electrolyte systems, interfaces, cell-level studies, and three-dimensional architectures. It is directed at physicists, chemists, materials scientists, electrochemists, electrical engineers, battery technologists, and evaluators of present and future generations of power sources. This handbook serves as a reference text providing state-of-the-art reviews on solid-state battery technologies, as well as providing insights into likely future developments in the field. It is extensively annotated with comprehensive references useful to the student and practitioners in the field.

Full Product Details

Author:   Nancy J Dudney (Oak Ridge Nat'l Lab, Usa) ,  William C West (Nagoya Univ, Japan) ,  Jagjit Nanda (Oak Ridge Nat'l Lab, Usa)
Publisher:   World Scientific Publishing Co Pte Ltd
Imprint:   World Scientific Publishing Co Pte Ltd
Edition:   Second Edition
Volume:   6
Dimensions:   Width: 15.00cm , Height: 4.80cm , Length: 23.10cm
Weight:   1.315kg
ISBN:  

9789814651899


ISBN 10:   9814651893
Pages:   836
Publication Date:   25 August 2015
Audience:   College/higher education ,  Professional and scholarly ,  Postgraduate, Research & Scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Advancing Conversion Electrode Reversibility With Bulk Solid-State Batteries (Thomas A Yersak and Se-Hee Lee); Interface of 4 V Cathodes With Sulfide Electrolytes (Kazunori Takada); Structural Batteries, Capacitors and Supercapacitors (J F Snyder, D J O'Brien and E D Wetzel); Crystalline Inorganic Solid Electrolytes Computer Simulations and Comparisons with Experiment (M D Johannes and N A W Holzwarth); Electrochemical Simulations Of 3d-Battery Architectures (Vahur Zadin and Daniel Brandell); Solid Electrode-Inorganic Solid Electrolyte Interface for Advanced All-Solid-State Rechargeable Lithium Batteries (Yasutoshi Iriyama & Zempachi Ogumi); Crystalline Polymer Electrolytes (Yuri G Andreev, Chuhong Zhang and Peter G Bruce); Fluoride Ion Conductors Munnangi (Anji Reddy and Maximilian Fichtner); In Situ Neutron Techniques For Lithium Ion And Solid State Rechargeable Batteries (Yuping He and Howard Wang); Silver Ion Conducting Electrolytes and Silver Solid State Batteries (Kevin Kirshenbaum, Roberta A DiLeo, Kenneth J Takeuchi, Amy C Marschilok and Esther S Takeuchi); Analytical Electron Microscopy - Study of All-Solid-State Batteries (Ziying Wang and Shirley Meng); Fundamental Aspects Of Ion Transport In Solid Electrolytes (S R Narayanan, Aswin K Manohar and B V Ratnakumar); Superionic Conducting Oxide Electrolytes (Jeff Sakamoto); Designing Solid Polymer Composite Electrolytes for Facile Lithium Transport and Mechanical Strength (Wyatt E Tenhaeff and Sergiy Kalnausa); All Solid-State Thin Film Batteries (Jie Song and William West);

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