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Titlebook: Nanoscale Technology for Advanced Lithium Batteries; Tetsuya Osaka,Zempachi Ogumi Book 2014 Springer Science+Business Media New York 2014

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3DOM Structure for Battery Electrodes and Electrolytes,structure of the electrode. In particular, in all-solid-state batteries, the structure is critical because of the poor contact of the solid active material with the solid electrolyte. A three-dimensionally ordered macroporous (3DOM) structure is an ideal structure due to its high porosity and regula
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Direct Current Methods for Battery Evaluation,ques developed for micro-sized electrodes can be applied to nano-sized electrodes. This chapter introduces the preparation of standard test cells with nano-sized electrodes and evaluation techniques using DC methods at the laboratory level.
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Alternating Current Methods for Battery Evaluation, in electrochemical signals can be discriminated without damage to the electrodes. An electrochemical impedance is determined by measuring the alternating current response to the alternating voltage imposed on the electrode/electrolyte interface. The electrode/electrolyte interface can be characteri
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,Nano Aspects of Metal–Air Batteries,city and, hence, high energy density. Aqueous and nonaqueous electrolyte solutions are used depending on the kind of metal electrode material such as zinc, iron, aluminum, magnesium, or lithium. The reversibility and stability of both metal and air electrodes are issues that need to be resolved. The
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Nano Aspects of Lithium/Sulfur Batteries,orce behind the development of a rechargeable lithium/sulfur (Li/S) battery. Since sulfur has the advantages of being relatively cheap and nonpoisonous, Li/S cells are more eco-friendly and economical compared to other secondary batteries. However, a considerable amount of research continues in an e
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