Xie Lizhao, Liu Hui, Lin Shaoxiong, Yang Xulai, Qi Meizhou, Zhu Lili, Guo Yujing, Guo Guilue
Hefei Guoxuan High-Tech Power Energy Co., Ltd. Hefei P. R. China
RSC Adv. 2019 Apr 12;9(20):11369-11376. doi: 10.1039/c9ra00778d. eCollection 2019 Apr 9.
Silicon-based anode materials are indispensable components in developing high energy density lithium-ion batteries, yet their practical application still faces great challenges, such as large volume change during the lithiation and delithiation process that causes the pulverization of silicon particles, and continuous formation and reformation of the solid electrolyte interfaces (SEI) which results in a low initial coulombic efficiency. As an endeavor to address these problems, in this study, Si/SiO/LiSiO@C structures were prepared a facile method using SiO, pitch powder and LiCO/PVA solution followed by annealing treatment. The Si/SiO/LiSiO@C composite shows a great improvement in lithium storage where a high discharge capacity of 1645.47 mA h g was delivered with the 1 C.E. of 69.05% at 100 mA g. These results indicate that the designed method of integrating prelithiation and carbon coating for SiO and the as-prepared macro scale Si/SiO/LiSiO@C structures are practical for implementation in lithium-ion battery technology.
硅基负极材料是开发高能量密度锂离子电池不可或缺的组成部分,但其实际应用仍面临巨大挑战,例如在锂化和脱锂过程中体积变化大,导致硅颗粒粉化,以及固体电解质界面(SEI)的不断形成和重构,从而导致初始库仑效率低。为了解决这些问题,在本研究中,采用一种简便的方法,使用SiO、沥青粉末和LiCO/PVA溶液制备了Si/SiO/LiSiO@C结构,随后进行退火处理。Si/SiO/LiSiO@C复合材料在锂存储方面有很大改进,在100 mA g下以1 C的电流密度循环时,具有1645.47 mA h g的高放电容量,首次库仑效率为69.05%。这些结果表明,为SiO集成预锂化和碳涂层的设计方法以及所制备的宏观尺度Si/SiO/LiSiO@C结构在锂离子电池技术中具有实际应用价值。