Jang Hee Dong, Kim Hyekyoung, Chang Hankwon, Kim Jiwoong, Roh Kee Min, Choi Ji-Hyuk, Cho Bong-Gyoo, Park Eunjun, Kim Hansu, Luo Jiayan, Huang Jiaxing
1] Rare Metals Research Center, Korea Institute of Geoscience &Mineral Resources, Deajeon. 305-350, Korea [2] Department of Nanomaterials Science and Engineering, University of Science &Technology, Deajeon. 305-350, Korea.
Rare Metals Research Center, Korea Institute of Geoscience &Mineral Resources, Deajeon. 305-350, Korea.
Sci Rep. 2015 Mar 30;5:9431. doi: 10.1038/srep09431.
A large amount of silicon debris particles are generated during the slicing of silicon ingots into thin wafers for the fabrication of integrated-circuit chips and solar cells. This results in a significant loss of valuable materials at about 40% of the mass of ingots. In addition, a hazardous silicon sludge waste is produced containing largely debris of silicon, and silicon carbide, which is a common cutting material on the slicing saw. Efforts in material recovery from the sludge and recycling have been largely directed towards converting silicon or silicon carbide into other chemicals. Here, we report an aerosol-assisted method to extract silicon nanoparticles from such sludge wastes and their use in lithium ion battery applications. Using an ultrasonic spray-drying method, silicon nanoparticles can be directly recovered from the mixture with high efficiency and high purity for making lithium ion battery anode. The work here demonstrated a relatively low cost approach to turn wafer slicing wastes into much higher value-added materials for energy applications, which also helps to increase the sustainability of semiconductor material and device manufacturing.
在将硅锭切割成薄片以制造集成电路芯片和太阳能电池的过程中,会产生大量的硅碎片颗粒。这导致约40%的硅锭质量的宝贵材料大量损失。此外,还会产生一种有害的硅污泥废料,其中主要含有硅碎片以及碳化硅,碳化硅是切片锯上常用的切割材料。从污泥中回收材料并进行循环利用的努力主要集中在将硅或碳化硅转化为其他化学品上。在此,我们报告一种气溶胶辅助方法,用于从此类污泥废料中提取硅纳米颗粒及其在锂离子电池应用中的用途。使用超声喷雾干燥法,可以从混合物中直接高效、高纯度地回收硅纳米颗粒,用于制造锂离子电池负极。此处的工作展示了一种成本相对较低的方法,可将晶圆切片废料转化为能源应用中附加值更高的材料,这也有助于提高半导体材料和器件制造的可持续性。