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锂离子电池硅负极材料上多孔碳基底孔体积匹配的基准测试

Benchmarking the Match of Porous Carbon Substrate Pore Volume on Silicon Anode Materials for Lithium-Ion Batteries.

作者信息

Xiao Yiming, Yi Si, Yan Zhilin, Qiu Xiaoyu, Ning Pengpeng, Yang Deren, Du Ning

机构信息

State Key Laboratory of Silicon and Advanced Semiconductor Materials and School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, China.

Carbon One New Energy (Hangzhou) Co., Ltd., Hangzhou, 311100, China.

出版信息

Small. 2024 Nov;20(45):e2404440. doi: 10.1002/smll.202404440. Epub 2024 Aug 1.

Abstract

Silicon (Si) is one of the most promising anode materials for high-energy-density lithium-ion batteries. However, the huge volume expansion hinders its commercial application. Embedding amorphous Si nanoparticles in a porous carbon framework is an effective way to alleviate Si volume expansion, with the pore volume of the carbon substrates playing a pivotal role. This work demonstrates the impact of pore volume on the electrochemical performance of the silicon/carbon porous composites from two perspectives: 1) pore volume affects the loadings of Si particles; 2) pore volume affects the structural stability and mechanical properties. The smaller pore volume of the carbon substrate cannot support the high Si loadings, which results in forming a thick Si shell on the surface, thereby being detrimental to cycling stability and the diffusion of electrons and ions. On top of that, the carbon substrate with a larger pore volume has poor structural stability due to its fragility, which is also not conducive to realizing long cycle life and high rate performance. Achieving excellent electrochemical performances should match the proper pore volume with Si content. This study will provide important insights into the rational design of the silicon/carbon porous composites based on the pore volume of the carbon substrates.

摘要

硅(Si)是用于高能量密度锂离子电池最具前景的负极材料之一。然而,巨大的体积膨胀阻碍了其商业应用。将非晶硅纳米颗粒嵌入多孔碳骨架是缓解硅体积膨胀的有效方法,其中碳基底的孔体积起着关键作用。这项工作从两个角度展示了孔体积对硅/碳多孔复合材料电化学性能的影响:1)孔体积影响硅颗粒的负载量;2)孔体积影响结构稳定性和机械性能。碳基底较小的孔体积无法支撑高硅负载量,这导致在表面形成厚硅壳,从而对循环稳定性以及电子和离子的扩散不利。除此之外,具有较大孔体积的碳基底由于其易碎性而结构稳定性差,这也不利于实现长循环寿命和高倍率性能。实现优异的电化学性能应使合适的孔体积与硅含量相匹配。本研究将为基于碳基底孔体积合理设计硅/碳多孔复合材料提供重要见解。

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