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Design and preparation of interconnected quasi-ball-in-ball tin dioxide/carbon composite containing void-space with high lithium storage properties

机译:具有高储锂性能的具有空隙空间的准球内二氧化锡/碳复合材料的设计与制备

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摘要

Rapid capacity fading is one of the major obstacles that seriously impede the applications of tin dioxide (SnO2)-based electrodes. Compositing SnO2 with carbon to form SnO2/carbon composites with rational nanostructures has been proven to be an effective strategy to overcome the problem of rapid capacity fading to a certain extent. Herein, an interestingly interconnected quasi-ball-in-ball nanostructure SnO2/carbon composite, denoted as Cs@void@SnO2@C, has been successfully fabricated by a simple and novel strategy. When used as anode materials for lithium-ion batteries, the Cs@void@SnO2@C exhibits high lithium storage and long cycling performance, delivering a reversible capacity of 793.7 mAh g(-1) after 450 cycles at 200 mA g(-1), and a reversible capacity of 486.3 mAh g(-1) after 1000 cycles even at 1000 mA g(-1). The uniquely interconnected quasi-ball-in-ball structure should be responsible for the good electrochemical performance, which is further confirmed by comparing with two control samples of Cs@SnO2@C and Cs@SnO2. (C) 2015 Elsevier Ltd. All rights reserved.
机译:快速容量衰减是严重阻碍基于二氧化锡(SnO2)的电极应用的主要障碍之一。已经证明,将SnO2与碳复合以形成具有合理纳米结构的SnO2 /碳复合材料是在一定程度上克服快速容量衰减的有效策略。在此,通过简单新颖的方法成功地制备了有趣的相互连接的准球纳米结构SnO 2 /碳复合材料,表示为Cs @ void @ SnO 2 @C。当用作锂离子电池的负极材料时,Cs @ void @ SnO2 @ C具有很高的锂存储能力和长循环性能,在200 mA g(-1)下经过450次循环后,可逆容量为793.7 mAh g(-1)。 ),甚至在1000 mA g(-1)的情况下1000次循环后的可逆容量为486.3 mAh g(-1)。独特的相互连接的准球在球结构应负责良好的电化学性能,这可以通过与Cs @ SnO2 @ C和Cs @ SnO2的两个对照样品进行比较来进一步证实。 (C)2015 Elsevier Ltd.保留所有权利。

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