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首页> 外文期刊>Electrochimica Acta >Si/C composite lithium-ion battery anodes synthesized using silicon nanoparticles from porous silicon
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Si/C composite lithium-ion battery anodes synthesized using silicon nanoparticles from porous silicon

机译:使用多孔硅中的硅纳米粒子合成的Si / C复合锂离子电池负极

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The synthesis of Si nanoparticles by ultrasonication processing of porous Si powder and a novel method for preparing a high-capacity Si/C composite using this technique is reported. The porous Si powder is prepared by selectively etching the silicide phase of a Ti_(24)Si_(76) alloy consisting of Si and silicide phases. The particle size of the nanocrystalline Si is determined by the crystallite size of the Si and silicide phases in the alloy powder. Ultrasonication of the porous Si obtained from the mechanically alloyed Ti_(24)Si_(76) alloy generates nanocrystalline Si particles of size about 5 nm. Growth of the Si and silicide phases in the alloy is induced by annealing of the mechanically alloyed sample, with a consequent increase in the size of the Si particles obtained after ultrasonication. Application of the ultrasonication process to the fabrication of Si/C composite anode materials generates nanometer-scale Si particles in situ that are distributed in the matrix. Analysis of the phases obtained and evaluation of the distribution of the nanometer-scale Si particles in the composites via XRD/TEM measurements show that the nanometerscale Si particles are effectively synthesized and uniformly distributed in the carbon matrix, leading to enhanced electrochemical performance of the Si/C composites.
机译:报道了通过对多孔硅粉进行超声处理来合成硅纳米粒子,以及利用该技术制备高容量硅/碳复合材料的新方法。通过选择性地蚀刻由Si和硅化物相组成的Ti_(24)Si_(76)合金的硅化物相来制备多孔Si粉末。纳米晶体Si的粒度由合金粉末中Si和硅化物相的微晶尺寸确定。从机械合金化的Ti_(24)Si_(76)合金中获得的多孔Si的超声处理会生成尺寸约为5 nm的纳米晶Si颗粒。合金中Si和硅化物相的生长是通过对机械合金化样品进行退火而引起的,因此,超声处理后获得的Si颗粒的尺寸也随之增加。将超声处理应用于制造Si / C复合阳极材料时,会在原位产生纳米级的Si颗粒。通过XRD / TEM测量分析所得相并评估复合材料中纳米级Si颗粒的分布情况,结果表明,纳米级Si颗粒可以有效地合成并均匀分布在碳基质中,从而提高了Si的电化学性能。 / C复合材料。

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