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Electrode properties of defect-introduced graphenes for lithium-ion batteries

机译:用于锂离子电池的缺陷引入的石墨烯的电极性能

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Electrochemical properties of defect-introduces graphenes for lithium ion batteries were investigated. Graphene sheets (GSs) were prepared from graphite through treating with oxidizing agent followed by rapid thermal exfoliation. Defect concentration was controlled by selecting the number of times of oxidation of graphite. GSs electrodes derived from 1, 2 and 3 times-oxidized graphite oxides exhibited a high charge capacity of 1250, 1790 and 2310 mAh g~(-1), respectively, at the 20th cycle at a current density of 100 mA g~(-1). The enhanced capacity is assumed to be due to additional lithium storage sites such as defects and edges.
机译:研究了缺陷引入锂离子电池的石墨烯的电化学性能。 石墨烯片(GSS)通过石墨制备,通过用氧化剂处理,然后快速剥离。 通过选择石墨氧化次数来控制缺陷浓度。 衍生自1,2和3次氧化石墨氧化物的GSS电极分别在第20次以100mA G〜( - - 1)。 假设增强的容量是由于额外的锂储存位点,例如缺陷和边缘。

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