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Graphene nanosheets and polyacrylic acid grafted silicon composite anode for lithium ion batteries

机译:锂离子电池用石墨烯纳米片和聚丙烯酸接枝硅复合负极

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摘要

A silicon/graphene composite anode for lithium-ion batteries was fabricated with a high loading of Si by combining surface-modified silicon with graphene. The Si nanopowder was modified by a binder-like organic moeity (1-(bromoethyl) benzene and polyacrylic acid) grafted on the surface of hydrogenated silicon by diazonium chemistry and surface initiated atom transfer radical polymerization. The graphene was produced by electrochemical exfoliation of natural graphite. The optimum composite electrode prepared without a binder, with silicon loading as high as 85 wt% and a mass loading of 1.1 +/- 0.1 mg cm(-2) yielded a discharge capacity of 1020 mAh per gram of electrode mass (or 1200 mAh per gram of Si) after 586 charge/discharge cycles at a rate of 3.4 A g(-1). It showed first cycle Coulombic efficiency of more than 90% in the absence of electrolyte additives at a current rate of 0.05 Ag-1.
机译:通过将表面改性的硅与石墨烯结合在一起,可以制备出高硅含量的锂离子电池硅/石墨烯复合阳极。硅纳米粉通过重氮化学和表面引发的原子转移自由基聚合反应,被接枝到氢化硅表面的类似粘结剂的有机分子(1-(溴乙基)苯和聚丙烯酸)改性。通过天然石墨的电化学剥离产生石墨烯。在没有粘结剂的情况下制备的最佳复合电极,硅的负载量高达85 wt%,质量负载为1.1 +/- 0.1 mg cm(-2),每克电极质量的放电容量为1020 mAh(或1200 mAh) 586个充电/放电周期后,以3.4 A g(-1)的速度释放出每克Si)。在电流速率为0.05 Ag-1的情况下,在不存在电解质添加剂的情况下,第一循环库仑效率超过90%。

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