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高性能锂离子电池硅阳极碳包覆涂层的研究进展

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近年来,能源需求的快速增长极大地促进了锂离子电池的发展。硅阳极以其极高的理论容量、相对较低的Li+嵌入电压和丰富的硅资源而备受关注。然而,充放电过程中巨大的体积膨胀和脆弱的固体电解质界面(SEI)膜阻碍了硅基阳极的商业应用。将Si材料与各种炭材料相结合,有利于增强材料结构稳定性和优化电极界面特性。本文介绍了作为硅阳极三维保护涂层的不同炭材料,概述了其主要制备方法。迄今为止,炭材料作为硅阳极保护涂层仍存在一些不足,有必要对碳保护涂层进行改性处理。重点介绍了碳保护涂层改性的最新研究进展,提出了硅阳极三维碳涂层的潜在替代材料。本综述将为高性能锂离子电池硅阳极三维保护涂层的设计提供一定的指导和参考。
A review of the carbon coating of the silicon anode in high-performance lithium-ion batteries
In the development of rechargeable lithium ion batteries(LIBs),silicon anodes have attracted much attention because of their extremely high theoretical capacity,relatively low Li-insertion voltage and the availability of silicon resources.However,their large volume expansion and fragile solid electrolyte interface(SEI)film hinder their commercial application.To solve these problems,Si has been combined with various carbon materials to increase their structural stability and improve their interface proper-ties.The use of different carbon materials,such as amorphous carbon and graphite,as three-dimensional(3D)protective anode coat-ings that help buffer mechanical strain and isolate the electrolyte is detailed,and novel methods for applying the coatings are out-lined.However,carbon materials used as a protective layer still have some disadvantages,necessitating their modification.Recent developments have focused on modifying the protective carbon shells,and substitutes for the carbon have been suggested.

Lithium-ion batteriesSilicon anode3D carbon coatingCarbon modificationLithium storage performance

徐泽宇、邵海波、王建明

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浙江大学化学系,浙江 杭州 310058

锂离子电池 硅阳极 三维碳涂层 碳改性 储锂性能

2024

新型炭材料
中国科学院山西煤炭化学研究所

新型炭材料

CSTPCD北大核心
影响因子:0.685
ISSN:1007-8827
年,卷(期):2024.39(5)