双金属片
阳极
兴奋剂
材料科学
光电子学
纳米技术
化学工程
冶金
工程物理
电极
化学
物理化学
物理
工程类
金属
作者
Baoguo Yang,Zhe Bai,Qian Luo,Zhenyuan Tang,Jun Li
标识
DOI:10.1002/cnma.202400637
摘要
Abstract: Silicon oxide (SiOx), due to its significant reversible capacity and significantly reduced volume expansion compared to pure silicon, holds promise as a candidate for high‐performance lithium‐ion battery anode materials. Unfortunately, SiOx still faces challenges for commercialization due to its volume expansion exceeding 160%, low initial coulombic efficiency, and low electrical conductivity. In this study, we employed metal oxides containing Ti and Sn to dope SiOx/C materials, utilizing a sol‐gel method to prepare SiOx/TiO2/SnO2/C composite anode materials. Furthermore, we adjusted the doping ratios of Sn and Ti to explore the optimal amount for improving the electrochemical performance of the material. Ultimately, it was found that the SiOx/TiO2/SnO2/C composite material prepared with a molar ratio of silicon, titanium, and tin at 10:0.7:0.3 exhibited the best performance, achieving an initial discharge capacity of 1845.33 mAh·g‐1 at a current density of 100mA·g‐1 and maintaining a reversible capacity of 843.41 mAh·g‐1 after 100 cycles, with a capacity retention rate of 75.9%. This work provides a relatively simple method to composite Ti and Sn metal oxides with SiOx, introducing additional conductive pathways to enhance the material's conductivity.
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