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Double-walled carbon nanotubes, a performing additive to enhance capacity retention of antimony anode in potassium-ion batteries

机译:双壁碳纳米管,一种表演添加剂,提高钾离子电池中锑阳极容量保持

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摘要

The effect of carbon additives on electrode formulation of bulk antimony was investigated in potassium-ion batteries. Several types of carbon including conventional carbon black, graphite and double-walled carbon nanotubes (DWCNT), employed as conductive agents, were found to play a non-negligible role on the electrochemical performance of antimony. While DWCNT alone show no reversible K+ storage compared to the other carbons, the Sb/DWCNT electrode exhibits better capacity retention and rate capability than Sb formulated with usual carbon additives or even with graphite. This can be ascribed to the specific structure of DWCNT acting not only as conductive additive but also as a mechanical reinforcement for the whole electrode, which has to withstand the large volume change of antimony during potassiation/depotassiation cycles. Keywords: Potassium-ion batteries, Negative electrodes, Composites, Antimony, Carbon nanotubes
机译:在钾离子电池中研究了碳添加剂对散装锑电极制剂的影响。发现包括用作导电剂的常规炭黑,石墨和双壁碳纳米管(DWCNT)的几种碳,以在锑的电化学性能上起着不可忽略的作用。当DWCNT单独显示不可逆转的K +储存而与其他碳相比,SB / DWCNT电极比具有常用碳添加剂的Sb表现出更好的容量保留和速率能力,甚至具有石墨。这可以归因于DWCNT的特定结构不仅是导电添加剂,而且作为整个电极的机械加固,其必须承受在PotAssiation / CootAssiation循环期间锑的大体积变化。关键词:钾离子电池,负电极,复合材料,锑,碳纳米管

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