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Antimony oxychloride/graphene aerogel composite as anode material for sodium and lithium ion batteries

机译:氧化氯化锑/石墨烯气体复合作为钠和锂离子电池的阳极材料

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摘要

Herein, we report on the synthesis of phase-pure antimony oxychloride (Sb4O5Cl2) microstructures and studies on their electrochemical properties as new and potential anodes for sodium and lithium ion batteries. We demonstrate that pristine Sb4O5Cl2 based electrode exhibits promising electrochemical behaviour, with a reversible discharge capacity of 830 mAh g(-1) for the first cycle when cycled against sodium at a current rate of 30 mA g(-1). Further, a composite of graphene aerogel is prepared with Sb4O5Cl2 microstructures, which are uniformly anchored on the graphene aerogel matrix (Sb4O5Cl2-GA), resulting in interconnected networks which facilitate better charge transfer and effective buffering to alleviate the structural variation of Sb4O5Cl2 during cycling. We show that Sb4O5Cl2-GA electrode exhibits excellent electrochemical properties with much improved cyclic stability and high rate capability. In addition, Sb4O5Cl2-GA delivers excellent performance as anode material for lithium ion batteries, with a reversible capacity of 600 mAh g(-1) obtained over 50 cycles, at a current rate of 50 mA g(-1). The obtained results are promising and demonstrate 3D networked antimony oxychloride/graphene composite as a potential anode material for both lithium and sodium ion batteries. (c) 2018 Elsevier Ltd. All rights reserved.
机译:在此,我们报告了相纯氧基氯化锑(Sb4O5Cl2)微观结构的合成,并研究其电化学性能作为钠和锂离子电池的新的和潜在阳极。我们证明基于原始的SB4O5Cl2电极表现出有希望的电化学行为,其在循环以30mA g(-1)的电流速率下循环时为第一循环的可逆放电容量为830mAhg(-1)。此外,石墨烯气体复合材料用Sb4O5Cl2微结构制备,其均匀地锚固在石墨烯气体基质(SB4O5CL2-GA)上,导致互连的网络,其促进更好的电荷转移和有效缓冲以减轻循环期间Sb4O5Cl2的结构变化。我们表明,Sb4O5Cl2-Ga电极具有出色的电化学性能,具有大大提高的循环稳定性和高速率能力。另外,SB4O5CL2-GA可作为锂离子电池的阳极材料提供优异的性能,可逆容量为600mAhg(-1),以50mAg(-1)的电流速率。获得的结果是有前途的,并证明3D网络氧化锑/石墨烯复合材料作为锂和钠离子电池的潜在阳极材料。 (c)2018年elestvier有限公司保留所有权利。

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