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首页> 外文期刊>Applied Surface Science >Protective carbon-coated silicon nanoparticles with graphene buffer layers for high performance anodes in lithium-ion batteries
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Protective carbon-coated silicon nanoparticles with graphene buffer layers for high performance anodes in lithium-ion batteries

机译:具有石墨烯缓冲层的保护性碳包覆硅纳米颗粒,用于锂离子电池中的高性能阳极

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摘要

Silicon is a promising anode material for use in lithium-ion batteries (LIBs). However, its volume expansion problem can cause critical issues that deteriorate efficiency, cycle life, and result in sudden breakage of battery cells. Herein, polyethylene glycol derived thin carbon-coated Si nanoparticles (Si/c-PEG) and graphene wrapping were used to block electrolyte contact and buffer volume changes, respectively. The hierarchical graphenewrapped Si/c-PEG (Si/c-PEG/G) exhibited outstanding performance with a gravimetric capacity of similar to 1820 mAh/g at 0.1 A/g and 99.5% Coulombic efficiency at the 10th cycle. Moreover, the full-cell configuration using Si/cPEG/G anodes with commercial lithium cobalt oxides (LiCoO2, LCO) cathodes demonstrated stable operation during repeated charge/discharge cycles at 0.1 and 1 C rates. Micelle coating of PEG with graphene layers was a useful method for minimizing the exposed area of silicon to the electrolyte during lithium-ion storage.
机译:硅是用于锂离子电池(LIB)的有前途的阳极材料。但是,其体积膨胀问题可能会导致严重问题,从而降低效率,循环寿命并导致电池单元突然断裂。在此,分别使用聚乙二醇衍生的薄碳包覆的Si纳米颗粒(Si / c-PEG)和石墨烯包裹来阻止电解质接触和缓冲液体积变化。分层的石墨烯包裹的Si / c-PEG(Si / c-PEG / G)表现出出色的性能,在第10个循环时的重量分析容量在0.1 A / g时类似于1820 mAh / g,库仑效率为99.5%。此外,使用Si / cPEG / G阳极和商用锂钴氧化物(LiCoO2,LCO)阴极的全电池配置在以0.1和1 C的速率反复进行充电/放电循环期间表现出稳定的运行。用石墨烯层对PEG进行胶束涂覆是一种在锂离子存储过程中最小化硅对电解质的暴露面积的有用方法。

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