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Titlebook: Rechargeable Batteries; Materials, Technolog Zhengcheng Zhang,Sheng Shui Zhang Book 2015 Springer International Publishing Switzerland 2015

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Oxygen Redox Catalyst for Rechargeable Lithium-Air Battery,er, the ORR in non-aqueous Li-ionic electrolyte is discussed in comparison with those occurring in the aqueous electrolytes. Recent advances and status in study of the electrocatalysts for non-aqueous electrolyte Li-air batteries are reviewed and discussed. 
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Challenges of Key Materials for Rechargeable Batteries,ronics through transportation vehicles to load-leveling stationary storage. This chapter outlines the current status and challenges that remain for the key materials of rechargeable batteries, especially lithium-ion batteries, including the cathode, anode, electrolyte, and separator. In addition, th
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Polyanion Compounds as Cathode Materials for Li-Ion Batteries,ular cathode materials (Goodenough and Kim in Chem Mater 22:587–603, .; Tarascon and Armand in Nature 414:359–367, .). Cathodes are not only the primary factor producing the working potential of Li-ion batteries, but also determine the number of Li ions (i.e., the practical capacity) which can be ut
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Carbonaceous Anode Materials,formance of LIBs strongly depends on the microtexture of the carbon materials. Due to the contribution of the carbon materials, the electrochemical performance of the LIBs has been improved almost double for the last 10 years. Thus, intensive work has focused on the identification of key factors of
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Lithium Titanate-Based Anode Materials,ty, environmental friendliness and low cost. It also presents attractive performance as anode material for Na-ion batteries. Nanostructuring and carbon coating endow Li.Ti.O. electrodes with excellent rate capability by overcoming its intrinsic sluggish Li-ion diffusivity and low electronic conducti
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