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高能量密度锂离子电池 材料、工程及应用High Energy Density Lithium Batteries 已有47人参与
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高能量密度锂离子电池 材料、工程及应用 从材料工程工艺方面进行了详细说明锂离子电池发展。 High Energy Density Lithium BatteriesRelated Subjects Catalysis in Industrial Chemistry Chemical & Environmental Health and Safety Computational Chemistry & Molecular Modeling Electrochemistry General Chemistry History of Chemistry Mathematics & Statistics for Chemistry Related Titles Batteries & Fuel Cells Handbook of Battery Materials, 2nd Edition, 2 Volume Set by Claus Daniel (Editor), J. O. Besenhard (Editor) Hydrogen and Fuel Cells by Detlef Stolten (Editor) Electrochemical Technologies for Energy Storage and Conversion, 2 Volume Set by Jiujun Zhang (Editor), Lei Zhang (Editor), Hansan Liu (Editor), Andy Sun (Editor), Ru-Shi Liu (Editor) Supercapacitors by Max Lu (Series Editor), Francois Beguin (Editor), Elzbieta Frackowiak (Editor) Fuel Cell Science and Engineering: Materials, Processes, Systems and Technology, 2 Volume Set by Detlef Stolten (Editor), Bernd Emonts (Editor) Principles and Applications of Lithium Secondary Batteries by Jung-Ki Park (Editor) Lithium Ion Batteries by Masataka Wakihara (Editor), Osamu Yamamoto (Editor)Click to Close Larger ImageHigh Energy Density Lithium Batteries Katerina E. Aifantis (Editor), Stephen A. Hackney (Editor), R. Vasant Kumar (Editor) ISBN: 978-3-527-32407-1 Hardcover 282 pages April 2010 US $155.00 Add to Cart This price is valid for People's Republic of China. Change location to view local pricing and availability. Other Available Formats: E-book Read Now Online An online version of this product is available through our subscription-based content service. Visit Wiley Online Library now PermissionsTo reuse content from this title Request Permissions Materials Engineering for High Density Energy Storage provides first-hand knowledge about the design of safe and powerful batteries and the methods and approaches for enhancing the performance of next-generation batteries. The book explores how the innovative approaches currently employed, including thin films, nanoparticles and nanocomposites, are paving new ways to performance improvement. The topic's tremendous application potential will appeal to a broad audience, including materials scientists, physicists, electrochemists, libraries, and graduate students. |
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