首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Recycled silicon-based anodes with three-dimensional hierarchical porous carbon framework synthesized by a self-assembly CaCO3 template method for lithium ion battery
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Recycled silicon-based anodes with three-dimensional hierarchical porous carbon framework synthesized by a self-assembly CaCO3 template method for lithium ion battery

机译:具有通过用于锂离子电池的自组装Caco3模板方法合成的三维分层多孔碳框架的再生硅基阳极。

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Silicon/carbon composite anodes with void space are widely touted as a promising candidate for lithiumion batteries (LIBs), providing a good volume change tolerance to maintain the integrity of the electrodes. However, the void space is usually created by complicated and environmentally-unfriendly methods with corrosive HF. Herein, a 3D hierarchical porous carbon framework supported silicon-based composite with void space (Si@Voids@PC) is synthesized by diluted HCI-assisted etching a self-assembly CaCO3 template method coupled with pyrolysis of citric acid as the carbon source. The Si@Voids@PC electrode exhibits reversible capacity retention of 1527 mAhg(-1) at 200 mAg(-1) after 200 cycles with an initial discharge specific capacity of 3060.6 mAhg(-1) and an initial Coulomb efficiency of 74.4%, which is superior to most of that in the reported literatures. This unique structure can not only provide more pathways for lithium ion diffusion and electron transfer but also maintain the integrity of the electrodes. Besides, the effect of lithiation behavior on the solid electrolyte interphase (SEI)-related problems is observed and discussed. This work might provide a facile and green method to synthesize silicon-based anodes with excellent electrochemical performance, and it also can be applied to the design of other materials with porous architecture. (C) 2020 Elsevier B.V. All rights reserved.
机译:具有空隙空间的硅/碳复合阳极被广泛吹捧为锂离子电池(LIB)的有前途的候选者,提供了良好的体积变化容限,以保持电极的完整性。然而,孔隙空间通常是由复杂且对环境不友好的方法与腐蚀性HF形成的。在此,我们研究了一种具有空隙空间的三维分层多孔碳骨架支撑硅基复合材料(Si@Voids@以柠檬酸为碳源,采用自组装CaCO3模板法,通过稀释HCI辅助刻蚀合成PC。这个Si@Voids@在200次循环后,PC电极在200 mAg(-1)下的可逆容量保持率为1527 mAhg(-1),初始放电比容量为3060.6 mAhg(-1),初始库仑效率为74.4%,优于大多数文献报道的结果。这种独特的结构不仅可以为锂离子扩散和电子转移提供更多的途径,而且可以保持电极的完整性。此外,还观察和讨论了锂化行为对固体电解质界面(SEI)相关问题的影响。这项工作为合成具有优异电化学性能的硅基阳极提供了一种简便、绿色的方法,也可应用于其他多孔结构材料的设计。(C) 2020爱思唯尔B.V.版权所有。

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