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FeS_2@CNT composite with synergistic battery/capacitor builds outstanding sodium-ion storage

机译:FES_2 @ CNT复合材料带协同电池/电容器构建出色的钠离子储存

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摘要

Pyrite (FeS2) as one of the most promising anode material candidates for sodium ion batteries suffers from sluggish electrochemical kinetics and large volume expansion, leading to rapid capacity decline and poor rate performance. In this work, ultra-fine FeS2 nanoparticles anchored on carbon nanotube conductive network (FeS2@CNT) were synthesized by one-step pyrolysis combined with solid vulcanization method. On the one hand, the conductive network of CNT not only provides necessary expansion space for FeS2 during the sodiation/desodiation process, but also improves the conductivity of the composites. On the other hand, ultra-fine FeS2 nanoparticle (54 nm) shortens the diffusion paths of Na-ions and triggers the outstanding pseudocapacitance effect. Owing to the synergic effect of battery/capacitor hybrid energy storage, the obtained FeS2@CNT composites exhibit excellent sodium ion storage performance. (C) 2020 Elsevier B.V. All rights reserved.
机译:黄铁矿(FES2)作为钠离子电池最有前途的阳极材料候选者之一,电化学动力学和大量膨胀的大量膨胀,导致能力下降和速率不佳。在这项工作中,通过一步热解与固体硫化方法合成锚定在碳纳米管导电网络(FES2 @ CNT)上的超细FES2纳米颗粒。一方面,CNT的导电网络不仅为COS2期间提供了FES2的必要扩展空间,而且还提高了复合材料的导电性。另一方面,超细FES2纳米粒子(54nm)缩短了Na-离子的扩散路径,并触发了优异的假偶像效应。由于电池/电容混合能量存储的协同效果,所获得的FES2 @ CNT复合材料表现出优异的离子储存性能。 (c)2020 Elsevier B.v.保留所有权利。

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