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PROCESS FOR THE PREPARATION OF KISH GRAPHITIC LITHIUM-INSERTION ANODE MATERIALS FOR LITHIUM-ION BATTERIES

机译:用于锂离子电池的Kish石墨插入锂阳极材料的制备方法

摘要

The present invention provides a process for the production of high-capacity kish graphitic lithium-insertion anode materials and negative electrodes prepared therefrom for lithium-ion batteries. The graphitic materials are produced by precipitating excess carbon present in supersaturated solutions of carbon in iron/steel uninoculated or inoculated with metals/metalloid singly or in combination. The form of carbon used for dissolution is a carbon-containing polymeric precursor such as biomaterials and non-biodegradable plastic wastes, the carbonization of which can be carried out in situ or prior to addition in the melt. The graphitic products deliver reversible capacities between 300 and 600 mAh·g−1 with flat voltage profiles for electrochemical insertion/deinsertion of lithium at potentials less than 200 mV.
机译:本发明提供了一种用于锂离子电池的高容量Kish石墨插入锂的负极材料和由其制备的负极的制造方法。石墨材料是通过沉淀单独或组合未接种或未接种金属/准金属的铁/钢中碳的过饱和溶液中存在的过量碳而产生的。用于溶解的碳的形式是含碳的聚合前体,例如生物材料和不可生物降解的塑料废物,其碳化可以原位进行或在添加到熔体中之前进行。石墨产品可提供300至600 mAh·g-1的可逆容量,并具有平坦的电压曲线,可在小于200 mV的电势下进行锂的电化学插入/插入。

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