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Effect of Carbon Matrix on Electrochemical Performance of Si/C Composites for Use in Anodes of Lithium Secondary Batteries

机译:碳基质对锂二次电池阳极用Si / C复合材料电化学性能的影响

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摘要

To investigate the influence of the carbon matrix on the electrochemical performance of Si/C composites, four types of Si/C composites were prepared using graphite, petroleum coke, pitch and sucrose as carbon precursors. A ball mill was used to prepare Si/C blends from graphite and petroleum coke, whereas a dispersion technique was used to fabricate Si/C composites where Si was embedded in disordered carbon matrix derived from pitch or sucrose. The Si/pitch-based carbon composite showed superior Si utilization (96% in the first cycle) and excellent cycle retention (70% after 40 cycles), which was attributed to the effective encapsulation of Si and the buffering effect of the surrounding carbon matrix on the silicon particles.
机译:为了研究碳基质对Si / C复合材料电化学性能的影响,以石墨,石油焦,沥青和蔗糖为碳前驱体制备了四种类型的Si / C复合材料。球磨机用于从石墨和石油焦中制备Si / C共混物,而分散技术则用于制造Si / C复合物,其中Si嵌入到源自沥青或蔗糖的无序碳基体中。硅/沥青基碳复合材料显示出优异的硅利用率(第一循环为96%)和优异的循环保持率(40个循环后为70%),这归因于有效的硅包封和周围碳基体的缓冲作用在硅颗粒上。

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