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3D Porous Silicon/N-Doped Carbon Composite Derived from Bamboo Charcoal as High-Performance Anode Material for Lithium-Ion Batteries

机译:3D多孔硅/ N掺杂碳复合材料源于竹炭作为锂离子电池的高性能阳极材料

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摘要

The exploitation of renewable biomass resources toward green, high-value-added functional nanomaterials is promising. Bamboo is a "natural Si reservoir" that contains a considerable amount of silica. Available bamboo charcoal is the carbonated bamboo material with attractive features. Herein, 3D porous silicon is extracted from bamboo charcoal by simple calcination and magnesiothermic reduction. For an improvement in the electrochemical stability, the porous Si is further coated with a layer of N-doped amorphous carbon by carbonizing the polyacrylonitrile precursor. The obtained silicon/nitrogen-doped carbon composite possesses a 3D porous structure and exhibits significantly improved cycling performance along with high rate capabilities. The optimized Si/N-doped carbon composite delivers a reversible capacity of 603 mA h g(-1) after 120 cycles at 200 mA g(-1) and a high capacity of 360 mA h g(-1) at 1.6 A g(-1). This demonstrates that the N-doped amorphous carbon layer can effectively accommodate the volume change of the 3D porous silicon and reduce the charge transfer resistance so as to improve the cycling durability of the Si/carbon composite. The overall preparation process of the Si/N-doped carbon composite is economic, environmentally friendly, and scalable. This work provides a sustainable solution from bamboo charcoal resource to hierarchically porous silicon/carbon composites for cost-efficient lithium-ion battery anode materials.
机译:利用可再生生物质资源对绿色,高附加值的官能纳米材料是有前途的。竹子是一种“天然Si水库”,含有相当数量的二氧化硅。可用的竹炭是碳酸竹材料,具有吸引力的特色。这里,通过简单的煅烧和镁热量从竹炭提取3D多孔硅。为了改善电化学稳定性,通过碳化聚丙烯腈前体进一步用一层N掺杂的无定形碳涂覆多孔Si。所获得的硅/氮掺杂碳复合材料具有3D多孔结构,并且具有显着改善的循环性能以及高速率能力。优化的Si / N-掺杂的碳复合材料在200mA g(-1)的120次循环后,可逆容量为603 mA hg(-1),高容量为360 mA hg(-1)( - 1)。这表明N掺杂的非晶碳层可以有效地容纳3D多孔硅的体积变化,并降低电荷传递电阻,以改善Si /碳复合材料的循环耐久性。 Si / N掺杂碳复合材料的整体制备过程是经济,环保和可扩展性的。这项工作为竹炭资源提供了可持续的解决方案,以进行成本高效的锂离子电池阳极材料的分层多孔硅/碳复合材料。

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