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Titlebook: Lithium Batteries; Science and Technolo Gholam-Abbas Nazri,Gianfranco Pistoia Book 2003 Springer-Verlag US 2003 Batterie.Metall.alloy.anode

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Graphite-Electrolyte Interface in Lithium-Ion BatteriesAlthough metallic lithium has an energy density (3860 mAh/g) higher than that of other alternative anodes, its poor performance and safety issues related to the low melting point of lithium (180 °C), dendritic growth during lithium deposition (charge), and high reactivity toward the electrolytes hav
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The Key Role of Nanoparticles in Reactivity of 3D Metal Oxides Toward Lithiumllenges in this new century is undoubtedly energy generation and storage. Ninety percent of today‘s electrical power generation still comes from fossil fuels, and we are constantly struggling to reduce the carbon dioxide emissions per unit of electric power so as to help curtail global warming. It i
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Alloys and Intermetallic Anodesthium as the negative electrode reactant. Binary phases, generally involving a solid solution of lithium in one of the forms of carbon, are currently employed on the negative side of lithium cells..There is considerable interest in finding alternative materials that might be more attractive than the
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Spinel Cathode Materials for Lithium-Ion Batteriese limited safety and rechargeability associated with the use of metallic lithium has prevented their widespread acceptance in the market. Unsatisfactory results with lithium metal have directed the research towards the development of the so called “rocking-chair” or “lithium-ion” batteries (LIB), ba
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Layered Manganese Oxides as Cathodeseries manufactured despite the high cost and safety hazards associated with cobalt. Apart from LiCo0., only the isostructural nickelate LiNi0., and more particularly the Co-substituted nickelate LiCo.Ni.0., have been considered to have sufficient energy density and cycling stability to be of commerc
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Understanding Phase Transformations in Lithium Battery Materials by Transmission Electron Microscopy development efforts. The most commonly used batteries in portable computers and cellular phones are lithium rechargeable batteries.. In these batteries, chemical energy stored in the positive electrode is released and converted into electrical energy during discharge through an intercalation (inser
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