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Yolk-shell structured silicon/carbonized polyacrylonitrile composites as anode materials for lithium-ion batteries

机译:Yolk-壳结构硅/碳化聚丙烯腈复合材料作为锂离子电池的阳极材料

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Silicon is a potential anode material for high-energy lithium-ion batteries because of its extremely high theoretical capacity. The most critical issue for the application of silicon anodes is the fast capacity fade caused by the large volume variation of silicon during lithiation and delithiation processes. In this study, silicon/carbon composites agglomerated from yolk-shell silicon@void@pyrolysis carbon particles were prepared by coating aluminum-silicon alloy particles with polyacrylonitrile and subsequently dissolving the aluminum from the carbonized composites in a ferric chloride etchant. The use of a proper amount of the hydrolyzed polyacrylonitrile as a binder in the coating process is beneficial to reduce the structural defects of the composites. The void space between the carbon shell and silicon core formed by removing the aluminum can accommodate the expanded silicon and thus stabilize the composite structures. As a result, the silicon/carbon composites exhibit considerably better cell performances, especially chargedischarge cycling stabilities, than the powder mixture of silicon and pyrolytic carbon. The composite with few structural defects maintained a reversible capacity of more than 500 mAh g-1 after 50 cycles at a current density of 0.1 C, while the silicon component in the powder mixture lost almost all of its capacity after only a few cycles.
机译:硅是高能量锂离子电池的潜在阳极材料,因为其极高的理论能力。硅阳极应用的最关键问题是锂电层和脱脂过程中硅的大体积变化引起的快速淡化。在该研究中,通过用聚丙烯腈涂覆铝 - 硅合金颗粒并随后将铝从氯化物蚀刻剂中的碳化复合材料溶解铝 - 硅合金颗粒,从而制备从蛋白质 - 壳硅硅/硅的硅/碳硅颗粒中粘聚的硅/碳复合材料。在涂布过程中使用作为粘合剂的适量的水解聚丙烯腈是有益的,有利于减少复合材料的结构缺陷。通过除去铝形成的碳壳和硅芯之间的空隙空间可以容纳膨胀硅并因此稳定复合结构。结果,硅/碳复合材料表现出相当更好的细胞性能,特别是加密循环稳定性,而不是硅和热解碳的粉末混合物。在电流密度为0.1℃的50次循环后,具有少量结构缺陷的复合能力在50次循环后保持超过500mAhg-1的可逆容量,而粉末混合物中的硅组分几乎损失了几乎几个循环后几乎所有的容量。

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