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首页> 外文期刊>Nanoscale >Si nanoparticle clusters in hollow carbon capsules (SNC@C) as lithium battery anodes: toward high initial coulombic efficiency
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Si nanoparticle clusters in hollow carbon capsules (SNC@C) as lithium battery anodes: toward high initial coulombic efficiency

机译:硅纳米颗粒群在空心碳胶囊(SNC@C)作为锂电池阳极:高首次库仑效率

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Large volumetric expansion and structural pulverization have been major problems in Si-based anode materials for Li-ion batteries. To overcome this limitation, yolk-shell structured Si-carbon structures have been proposed to allow for the reversible structural breathing of Si nanoparticles confined inside the carbon shell. However, initial coulombic efficiency (ICE) of the yolk-shell structured anodes is highly decreased mainly due to their extremely high specific surface area (SSA) and the resulting excessive formation of solid electrolyte interphase (SEI) over the carbon shell. Here, instead of using a single Si nanoparticle-containing yolk-shell structure, we propose a novel structure comprising hollow carbon capsules internally encapsulating Si nanoparticle clusters (SNC@Cs). To implement this structural design, Si nanoparticle clusters are encompassed by a polystyrene matrix (SNC@PS) by emulsion polymerization, followed by coating with a polydopamine (PDA) layer (SNC@PS@PDA). Then, after annealing them for carbonization, SNC@Cs are finally prepared, which can decrease the SSA by a factor of one-third compared to the conventional yolk-shell structures. These SNC@C particles have shown remarkably high ICE values of up to 81%. Moreover, the cycling stability could be improved up to 100 cycles because the properly confined Si cluster inside the stable carbon capsule mitigates structural pulverization during repeated lithiation-delithiation processes of Si nanoparticles.
机译:大体积膨胀和结构粉碎的主要问题Si-based锂离子电池的负极材料。克服这个限制,yolk-shell结构化Si-carbon结构提出了允许可逆结构Si的呼吸纳米粒子在碳壳内。然而,首次库仑效率(ICE)yolk-shell结构化阳极是高度下降主要是由于他们的极高比表面积(SSA)和由此产生的过度形成固态电解质碳壳间期(SEI)。而不是使用一个如果nanoparticle-containing yolk-shell结构,我们提出一种新颖的结构组成的空洞碳胶囊内部封装Si纳米簇(SNC@Cs)。结构设计,如果纳米簇包含由聚苯乙烯矩阵(SNC@PS)乳液聚合,紧随其后的是涂层polydopamine (PDA)层(SNC@PS@PDA)。退火后碳化,SNC@Cs终于准备好了,可以减少SSA吗三分之一倍相比传统yolk-shell结构。冰粒子显示显著的高值高达81%。可以改善100周期,因为适当限制如果集群内部的稳定碳胶囊降低结构性粉碎重复lithiation-delithiation过程中硅纳米颗粒。

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