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Titlebook: Electrolytes for Lithium and Lithium-Ion Batteries; T. Richard Jow,Kang Xu,Makoto Ue Book 2014 Springer Science+Business Media New York 20

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https://doi.org/10.1007/978-3-642-47674-7pter discusses applications of quantum chemistry methods to determine electrolyte oxidative stability and oxidation-induced decomposition reactions. A link between the oxidation stability of model electrolyte clusters and the kinetics of oxidation reactions is established and compared with the resul
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https://doi.org/10.1007/978-3-642-50683-3 Other to a large extent at the time of the breakthroughs. However, as the new computers and computational methods were efficient, these fast became used in the field to model well-known battery materials and phenomena, often with the aim to explain experimental data. Later there were also new batte
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https://doi.org/10.1007/978-1-4939-0302-3Electrochemistry; Electrode; Electrolyte Development; Electrolytes; Interfacial Chemistry
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0076-9924 thium and Lithium-ion Batteries is ideal for electrochemists, engineers, researchers interested in energy science and technology, material scientists, and physicists working on energy.978-1-4939-4231-2978-1-4939-0302-3Series ISSN 0076-9924 Series E-ISSN 2197-7941
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Recent Advances in Ionic Liquids for Lithium Secondary Batteries,tions using these ILs has increased during the past decade since early reports indicated their compatibility with conventional composite electrodes such as lithium cobalt dioxide, LiCoO. [3–5]. Although various cathodes and anodes, and almost all composite electrodes, have been investigated, except
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