Phosphorus-doped silicon copper alloy composites as high-performance anode materials for lithium-ion batteries

被引:6
|
作者
Li, Qi [1 ]
Yu, Mo [1 ]
Huang, Yating [1 ]
Cai, Zhenfei [1 ]
Wang, Shuai [1 ]
Ma, Yangzhou [1 ]
Song, Guangsheng [1 ]
Yu, Zexin [2 ]
Yang, Weidong [3 ]
Wen, Cuie [4 ]
机构
[1] Anhui Univ Technol, Sch Mat Sci & Engn, Key Lab Green Fabricat & Surface Technol Adv Met M, Minist Educ, Maanshan 243000, Peoples R China
[2] Soochow Univ, Sch Mech & Elect Engn, Suzhou 215123, Peoples R China
[3] CSIRO, Future Mfg Flagship, Melbourne, Vic 3168, Australia
[4] RMIT Univ, Sch Engn, Bundoora, Vic 3083, Australia
基金
安徽省自然科学基金;
关键词
Lithium-ion batteries; Silicon anodes; Si-Cu alloy; Doping; POROUS CARBON; BORON;
D O I
10.1016/j.jelechem.2023.117684
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Silicon (Si) anodes are considered one of the most promising candidates for next-generation lithium-ion batteries, owing to their high theoretical capacity. However, Si-based anodes suffer from significant volume expansion during lithiation, leading to severe mechanical degradation and poor cycling stability. To address these challenges, We developed phosphorus (P)-doped Si-Cu alloy composites via a simple vacuum melting method. The incorporation of Cu3Si in the composites effectively suppressed the volume expansion of Si, while P doping enabled the formation of N-type Si to improve electrical conductivity. In our study, we conducted a comprehensive analysis of the electrochemical performance of the P-doped Si-Cu alloy composites. Among the samples, the P0.5% Si-Cu alloy composite exhibited the most exceptional electrochemical performance, with a capacity of 1048 mAh/g after 60 cycles at the current density of 100 mA/g. Electrochemical impedance spectroscopy (EIS) measurements revealed a lower Rct value of 73.65 & omega; for the P0.5% Si-Cu alloy composite compared to 175.2 & omega; for the Si-Cu alloy composite. Our theoretical calculations also demonstrated that P doping reduces the energy barrier for lithium-ion diffusion. Our study validated the potential of P-doped Si-Cu alloy composites as highperformance anode materials for lithium-ion batteries and provides new insights into the design of Si-based anodes with improved stability and cycling performance.
引用
收藏
页数:9
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