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Facile Synthesis of Porous Silicon Nanofibers by Magnesium Reduction for Application in Lithium Ion Batteries

机译:镁还原法制备多孔硅纳米纤维在锂离子电池中的应用

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摘要

We report a facile fabrication of porous silicon nanofibers by a simple three-stage procedure. Polymer/silicon precursor composite nanofibers are first fabricated by electrospinning, a water-based spinning dope, which undergoes subsequent heat treatment and then reduction using magnesium to be converted into porous silicon nanofibers. The porous silicon nanofibers are coated with a graphene by using a plasma-enhanced chemical vapor deposition for use as an anode material of lithium ion batteries. The porous silicon nanofibers can be mass-produced by a simple and solvent-free method, which uses an environmental-friendly polymer solution. The graphene-coated silicon nanofibers show an improved cycling performance of a capacity retention than the pure silicon nanofibers due to the suppression of the volume change and the increase of electric conductivity by the graphene.
机译:我们报告了通过简单的三阶段程序的多孔硅纳米纤维的便捷制造。聚合物/硅前体复合纳米纤维首先通过静电纺丝(一种水基纺丝原液)进行制造,然后对其进行热处理,然后使用镁进行还原以转化为多孔硅纳米纤维。通过使用等离子体增强化学气相沉积法将多孔硅纳米纤维涂覆有石墨烯,以用作锂离子电池的负极材料。多孔硅纳米纤维可以通过简单且无溶剂的方法大量生产,该方法使用了环保的聚合物溶液。石墨烯包覆的硅纳米纤维由于抑制了体积变化和石墨烯的电导率的增加而显示出比纯硅纳米纤维改善的容量保持的循环性能。

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