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One-Step Synthesis of Si@C Nanoparticles by Laser Pyrolysis: High-Capacity Anode Material for Lithium-Ion Batteries

机译:激光热解一步合成Si @ C纳米粒子:锂离子电池的高容量阳极材料

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摘要

Carbon-covered silicon nanoparticles (Si@C) were synthesized for the first time by a one-step continuous process in a novel two stages laser pyrolysis reactor. Crystallized silicon cores formed in a first stage were covered in the second stage by a continuous shell mainly consisting in low organized sp(2) carbon. At the Si/C interface silicon carbide is absent. Moreover, the presence of silicon oxide is reduced compared to materials synthesized in several steps, allowing the use of such material as promising anode material in lithium-ion batteries (LIB). Auger Electron Spectroscopy (AES) analysis of the samples at both SiKLL and SiLVV edges proved the uniformity of the carbon coating. Cyclic voltammetry was used to compare the stability of Si and Si@C active materials. In half-cell configuration, Si@C exhibits a high and stable capacity of 2400 mAh g(-1) at C/10 and up to 500 mAh g(-1) over 500 cycles at 2C. The retention of the capacity is attributed to the protective effect of the carbon shell, which avoids direct contact between the silicon surface and the electrolyte.
机译:在新型的两级激光热解反应器中,通过一步连续的方法首次合成了碳覆盖的硅纳米粒子(Si @ C)。在第一阶段中形成的结晶硅核在第二阶段中被连续壳覆盖,该壳主要由低序化的sp(2)碳组成。在Si / C界面处不存在碳化硅。而且,与在几个步骤中合成的材料相比,氧化硅的存在得以减少,从而允许将这种材料用作锂离子电池(LIB)中有希望的阳极材料。 SiKLL和SiLVV边缘的样品的俄歇电子能谱(AES)分析证明了碳涂层的均匀性。循环伏安法用于比较Si和Si @ C活性材料的稳定性。在半电池配置中,Si @ C在C / 10时显示出2400 mAh g(-1)的高而稳定的容量,在2C下经过500次循环显示出高达500 mAh g(-1)的容量。容量的保持归因于碳壳的保护作用,其避免了硅表面与电解质之间的直接接触。

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