简介概要

Effects of carbon on electrochemical performance of red phosphorus(P) and carbon composite as anode for sodium ion batteries

来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2021年第9期

论文作者:Zhi-Jia Zhang Wei-Jie Li Shu-Lei Chou Chao Han Hua-Kun Liu Shi-Xue Dou

文章页码:140 - 146

摘    要:Red phosphorus/graphite(P/G) and red phosphorus/carbon nanotube(P/CNT) composites were prepared by ball milling red phosphorus with CNTs and graphite, respectively. The electrochemical results show superior electrochemical performances of the P/G and P/CNT composites compared with that of the reference sample milled with Super-P carbon. After 70 cycles, the P/G and P/CNT composites remained771.6 and 431.7 m A h g-1, with 68 % and 50 % capacity retention, respectively. With increasing the milling time(20 h), CNTs were cut into short pieces and then broken into carbon rings and sheets which were well mixed with red phosphorus. The morphology of the P/CNT composite can buffer the large volume changes from alloying and de-alloying during cycling, resulting in the enhanced cycling stability.

详情信息展示

Effects of carbon on electrochemical performance of red phosphorus(P) and carbon composite as anode for sodium ion batteries

Zhi-Jia Zhang1,Wei-Jie Li2,Shu-Lei Chou2,Chao Han2,3,Hua-Kun Liu2,Shi-Xue Dou2

1. State Key Laboratory of Separation Membrane and Membrane Processes, Tianjin Municipal Key Laboratory of Advanced Fibers and Energy Storage, School of Materials Science and Engineering, Tiangong University2. Institute for Superconducting and Electronic Materials, University of Wollongong3. School of Civil and Environmental Engineering, Faculty of Engineering and Information Technology, University of Technology Sydney

摘 要:Red phosphorus/graphite(P/G) and red phosphorus/carbon nanotube(P/CNT) composites were prepared by ball milling red phosphorus with CNTs and graphite, respectively. The electrochemical results show superior electrochemical performances of the P/G and P/CNT composites compared with that of the reference sample milled with Super-P carbon. After 70 cycles, the P/G and P/CNT composites remained771.6 and 431.7 m A h g-1, with 68 % and 50 % capacity retention, respectively. With increasing the milling time(20 h), CNTs were cut into short pieces and then broken into carbon rings and sheets which were well mixed with red phosphorus. The morphology of the P/CNT composite can buffer the large volume changes from alloying and de-alloying during cycling, resulting in the enhanced cycling stability.

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