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Titlebook: Iron Phosphate Materials as Cathodes for Lithium Batteries; The Use of Environme Pier Paolo Prosini Book 2011 Springer-Verlag London Limite

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書目名稱Iron Phosphate Materials as Cathodes for Lithium Batteries
副標(biāo)題The Use of Environme
編輯Pier Paolo Prosini
視頻videohttp://file.papertrans.cn/476/475401/475401.mp4
概述Gives a modern approach.Presents a new approach to obtaining carbon doped material.Written by an expert
圖書封面Titlebook: Iron Phosphate Materials as Cathodes for Lithium Batteries; The Use of Environme Pier Paolo Prosini Book 2011 Springer-Verlag London Limite
描述.Iron Phosphate Materials as Cathodes for Lithium Batteries. describes the synthesis and the chemical–physical characteristics of iron phosphates, and presents methods of making LiFePO4 a suitable cathode material for lithium-ion batteries..The author studies carbon’s ability to increase conductivity and to decrease material grain size, as well as investigating the electrochemical behaviour of the materials obtained. .Iron Phosphate Materials as Cathodes for Lithium Batteries. also proposes a model to explain lithium insertion/extraction in LiFePO4 and to predict voltage profiles at various discharge rates..Iron Phosphate Materials as Cathodes for Lithium Batteries. is written for postgraduate students and researchers in electrochemistry, R&D professionals and experts in electrochemical storage..
出版日期Book 2011
關(guān)鍵詞Cathode Material; Lithium Battery; Lithium Iron Phosphate; Lithium-Ion Battery; Positive Electrodes
版次1
doihttps://doi.org/10.1007/978-0-85729-745-7
isbn_softcover978-1-4471-6075-5
isbn_ebook978-0-85729-745-7
copyrightSpringer-Verlag London Limited 2011
The information of publication is updating

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https://doi.org/10.1007/978-0-85729-745-7Cathode Material; Lithium Battery; Lithium Iron Phosphate; Lithium-Ion Battery; Positive Electrodes
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Electrode Materials for Lithium-ion Batteries,or lithium-ion batteries has progressively increased. LiFePO. represents a valid candidate to build large size batteries for powering electric vehicles or for realizing dispersed electrical power sources. Not only are the precursors relatively inexpensive, but iron is also less toxic compared to oth
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Triphylite,O. represents an excellent candidate: it is inexpensive, non-toxic, and environmentally benign. It also exhibits a theoretical specific capacity of 170 Ah kg.. LiFePO. is a natural product, known by the name of Triphylite. In 1997 Padhi et al. (J. Electrochem. Soc. ., 1188–1194 ,1997) showed that li
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Vivianite and Beraunite,red to “high-temperature” methods (Dominkó et al., J Power Sour. ., 274–280, 2006; Yang et al., Electrochem. Commun. ., 505–508, 2001; Zhang et al., Funct. Mater Lett. ., 177–180, 2010; Palomares et al., J. Power Sour. ., 879–885, 2007). Liquid-phase synthesis has the advantage to be carried out at
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