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Titlebook: New Trends in Intercalation Compounds for Energy Storage; C. Julien,J. P. Pereira-Ramos,A. Momchilov Book 2002 Springer Science+Business M

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Lithium Insertion Compounds for Energy Storageerview of the various cathode and anode hosts after providing an introduction to lithium insertion compounds and the principles of lithium-ion cells. Transition metal oxides crystallizing in a rock salt-based layer and the spinel structures and having highly oxidized M. (M=Mn, Co and Ni) redox coupl
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On the Use of In-Situ Generated Tin-Based Composite Materials in Lithium-Ion Cellscells using lithium intercalation cathodes have been extensively studied for some 25 years. The growth of lithium dentrites during cycling results in a reduction of the cycle life and led to safety concerns. Thus, lithium was replaced in the negative electrode by lithiuminsertion carbon-based materi
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Physical Chemistry of Lithium Intercalation Compoundserties of the host lattice, and a change of preferential crystallographic parameters without destruction of the original structure are the main effects occurring during intercalation. Optical spectroscopies such as Raman scattering, far-infrared reflectivity, absorption measurements, and photolumine
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Lattice Dynamics of Manganese Oxides and Their Intercalated Compounds the structural frameworks of the manganese dioxides (MD) consist of MnO. octahedral units shared by corners and/or edges. The excellent electrochemical properties of several MD phases have attracting much attention for positive electrode materials in lithium batteries [.-.]. MnO. was originally dev
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