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Dual-carbon enhanced silicon-based composite as superior anode material for lithium ion batteries

机译:双碳增强硅基复合材料是锂离子电池的优质负极材料

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Dual-carbon enhanced Si-based composite (Si/C/G) has been prepared via employing the widely distributed, low-cost and environmentally friendly Diatomite mineral as silicon raw material. The preparation processes are very simple, non-toxic and easy to scale up. Electrochemical tests as anode material for lithium ion batteries (LIBs) demonstrate that this Si/C/G composite exhibits much improved Li-storage properties in terms of superior high-rate capabilities and excellent cycle stability compared to the pristine Si material as well as both single-carbon modified composites. Specifically for the Si/C/G composite, it can still deliver a high specific capacity of about 470 mAh g(-1) at an ultrahigh current density of 5 A g(-1), and exhibit a high capacity of 938 mAh g(-1) at 0.1 A g(-1) with excellent capacity retention in the following 300 cycles. The significantly enhanced Li-storage properties should be attributed to the co-existence of both highly conductive graphite and amorphous carbon in the Si/C/G composite. While the former can enhance the electrical conductivity of the obtained composite, the latter acts as the adhesives to connect the porous Si particulates and conductive graphite flakes to form robust and stable conductive network. (C) 2016 Elsevier B.V. All rights reserved.
机译:双碳增强硅基复合材料(Si / C / G)是通过使用分布广泛,低成本且环保的硅藻土矿物作为硅原料制备的。制备过程非常简单,无毒且易于扩大规模。作为锂离子电池(LIB)阳极材料的电化学测试表明,与原始Si材料以及与之相比,这种Si / C / G复合材料均具有出色的高倍率性能和出色的循环稳定性,从而大大改善了锂存储性能。单碳改性复合材料。特别是对于Si / C / G复合材料,它仍可以在5 A g(-1)的超高电流密度下提供约470 mAh g(-1)的高比容量,并表现出938 mAh g的高容量(-1)在0.1 A g(-1)下,在接下来的300个循环中具有出色的容量保持率。锂储存性能的显着提高应归因于高导电性石墨和非晶碳在Si / C / G复合材料中的共存。前者可以提高所得复合材料的电导率,而后者则充当粘合剂,将多孔硅微粒和导电石墨薄片连接起来,形成坚固而稳定的导电网络。 (C)2016 Elsevier B.V.保留所有权利。

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