法拉第效率
阳极
材料科学
硅
锂(药物)
电解质
锂离子电池
化学工程
多孔硅
电池(电)
电化学
碳纤维
电极
多孔性
纳米技术
化学
复合材料
工程类
冶金
复合数
功率(物理)
物理
内分泌学
物理化学
医学
量子力学
作者
Tianting Zhao,Delun Zhu,Wenrong Li,Aijun Li,Jiujun Zhang
标识
DOI:10.1016/j.jpowsour.2019.227027
摘要
Porous silicon-based materials are considered promising next generation lithium-ion battery anode materials. Here, we report the rational design of multiscale recombined porous Si/C composites via a controllable and simple Ag-assisted chemical etching process with subsequent heat treatment of porous Si and chitosan composites (porous Si/CTS) which prepared by self-assembly process. Chitosan is a green, nontoxic and biodegradable carbon source. The three-dimensional porous (3D porous) structure accommodates the huge volume changes during lithiation and delithiation, which helps form more stable solid electrolyte interface (SEI) film and significantly improves the electrochemical stability. The multiplicity conductive network is constructed by Ag nanoparticles and carbon layer, which keep conductive contact and maintain structure stability. The Li-ion battery anode based on porous Si/C exhibits a reversible high capacity of 782.1 mAh/g at 0.5 C after 200 cycles with excellent Coulombic efficiency. This work opens a promising approach for production of high-performance micro-sized silicon-based anode materials in Li-ion battery.
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