A low-cost Si@C composite for lithium-ion batteries anode materials synthesized via freeze-drying process using kerf loss Si waste

被引:0
作者
Hengsong Ji
Xiaohua Xu
Xiang Li
Kefan Li
Liang Yuan
Zewen Han
Kai Tang
机构
[1] Jiangsu University,Institute of Energy Research
[2] Jiangsu University,School of Energy and Power Engineering
[3] Taizhou DongBo New Materials Co. Ltd,undefined
[4] SINTEF Industry,undefined
来源
Ionics | 2024年 / 30卷
关键词
Freeze-drying; Kerf loss Si waste; Glucose; Lithium-ion batteries;
D O I
暂无
中图分类号
学科分类号
摘要
Silicon-carbon (Si@C) composites are emerging as promising replacements for commercial graphite in lithium-ion battery (LIB) anodes. This study focuses on the development of Si@C composites using silicon waste from photovoltaic industry kerf loss (KL) as a source for LIB anodes. We extracted purified nanosilicon powder from KL Si wastes through a combined process of ball milling and acid leaching. The Si@C composites were then fabricated using a novel approach involving glucose coating and freeze-drying. This method ensures that the glucose effectively encapsulates the silicon, significantly mitigating volume fluctuations during charge/discharge cycles. Additionally, the freeze-drying process introduces a rich porosity to the composite, facilitating enhanced Li+ diffusion. Our results show that the synthesized Si@C electrode, designated as SC-13, delivers a stable discharge specific capacity of 792 mAh g−1 over 100 cycles at a current density of 0.1 A g−1. This study not only showcases a cost-effective technique for converting KL Si waste into a high-value material but also contributes to the advancement of energy storage solutions.
引用
收藏
页码:2585 / 2599
页数:14
相关论文
共 172 条
  • [1] Li Z(2023)Particulate modification of lithium-ion battery anode materials and electrolytes Particuology 83 129-141
  • [2] Fu N(2022)Research progress of nano-silicon-based materials and silicon-carbon composite anode materials for lithium-ion batteries J Solid State Electrochem 26 1125-1136
  • [3] Yang Z(2022)Biomass-based silicon and carbon for lithium-ion battery anodes Front Chem 10 882081-105
  • [4] Xiao Z(2017)Industrial waste silica preparation of silicon carbide composites and their applications in lithium-ion battery anode J Alloy Compound 695 100-754
  • [5] Wang C(2023)Recycling silicon waste from the photovoltaic industry to prepare yolk–shell Si@void@C anode materials for lithium–ion batteries Processes 11 1764-4302
  • [6] Song L(2021)A review of recent developments in Si/C composite materials for Li-ion batteries Energy Storage Mater 34 735-446
  • [7] Muraleedharan Pillai M(2023)Boron-doped porous waste silicon/carbon composite with improved performance for lithium-ion batteries Mater Sci Eng B-Adv 296 116676-17434
  • [8] Kalidas N(2020)Research progress of silicon/carbon anode materials for lithium-ion batteries: structure design and synthesis method ChemElectroChem 7 4289-135
  • [9] Zhao X(2018)Recent progress on silicon-based anode materials for practical lithium-ion battery applications Energy Storage Mater 15 422-5579
  • [10] Xiang K(2023)Recent progress of Si-based anodes in the application of lithium-ion batteries J Energy Storage 72 108715-10