Rare Metals Research Center, Korea Institute of Geoscience &Mineral Resources, Daejeon, 34132, Korea.
Department of Nanomaterials Science and Engineering, University of Science &Technology, Daejeon, 34113, Korea.
Sci Rep. 2016 Sep 20;6:33688. doi: 10.1038/srep33688.
Over 40% of high-purity silicon (Si) is consumed as sludge waste consisting of Si, silicon carbide (SiC) particles and metal impurities from the fragments of cutting wire mixed in ethylene glycol based cutting fluid during Si wafer slicing in semiconductor fabrication. Recovery of Si from the waste Si sludge has been a great concern because Si particles are promising high-capacity anode materials for Li ion batteries. In this study, we report a novel one-step aerosol process that not only extracts Si particles but also generates Si-graphene (GR) composites from the colloidal mixture of waste Si sludge and graphene oxide (GO) at the same time by ultrasonic atomization-assisted spray pyrolysis. This process supports many advantages such as eco-friendly, low-energy, rapid, and simple method for forming Si-GR composite. The morphology of the as-formed Si-GR composites looked like a crumpled paper ball and the average size of the composites varied from 0.6 to 0.8 μm with variation of the process variables. The electrochemical performance was then conducted with the Si-GR composites for Lithium Ion Batteries (LIBs). The Si-GR composites exhibited very high performance as Li ion battery anodes in terms of capacity, cycling stability, and Coulombic efficiency.
在半导体制造中,用于硅片切割的乙二醇基切割液会将硅、碳化硅 (SiC) 颗粒和金属杂质等与切割丝碎片混合,形成高纯度硅 (Si) 约 40%以上的污泥废料。由于硅颗粒是锂离子电池有前途的高容量阳极材料,因此从废硅污泥中回收硅一直是人们关注的焦点。在这项研究中,我们报告了一种新颖的一步气溶胶工艺,通过超声雾化辅助喷雾热解,不仅可以从废硅污泥和氧化石墨烯 (GO) 的胶体混合物中提取硅颗粒,还可以同时生成硅-石墨烯 (GR) 复合材料。该工艺具有环保、低能耗、快速和简单的形成 Si-GR 复合材料的方法等诸多优点。形成的 Si-GR 复合材料的形态看起来像一个皱巴巴的纸球,复合材料的平均尺寸在 0.6 到 0.8μm 之间,这取决于工艺变量。然后,用 Si-GR 复合材料进行了锂离子电池 (LIBs) 的电化学性能测试。Si-GR 复合材料作为锂离子电池的阳极,在容量、循环稳定性和库仑效率方面表现出非常高的性能。