虎门体育官方登录入口网:标题
虎门体育官方登录入口网:作者
作者:Ouyang, LZ (Ouyang, Liuzhang)[1,2 ]; Guo, LN (Guo, Lina)[1,2 ]; Cai, WH (Cai, Weihua)[3 ]; Ye, JS (Ye, Jianshan)[3 ]; Hu, RZ (Hu, Renzong)[1,2 ]; Liu, JW (Liu, Jiangwen)[1,2 ]; Yang, LC (Yang, Lichun)[1,2 ]; Zhu, M (Zhu, Min)[1,2 ]
虎门体育官方登录入口网:期刊信息
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文献类型:Article
虎门体育官方登录入口网:摘要
Efficient production of graphene or its germanium (Ge) composites remains a challenge, although Ge nanoparticles (NPs) wrapped with graphene are suitable for preventing the large volume change of anodes for lithium ion batteries during Li uptake and release processes. This work is the first simple, efficient in situ synthesis of Ge NPs, with an excellent structure, wrapped with few-layer graphene sheets (abbreviated as Ge@FLG) from commercial Ge powders and natural graphite by a one-step ball-milling process assisted by dielectric-barrier discharge plasma. Because of their unique structure, Ge@FLG electrodes exhibit better electrical conductivity, low initial capacity loss, good cycling capability, and rate resilience compared with Ge@C electrodes prepared by conventional milling. This work highlights a new method for the efficient production of Ge@FLG composites and their applications in lithium ion batteries and in other technologies.
虎门体育官方登录入口网:关键词
KeyWords Plus:DISCHARGE PLASMA; GRAPHENE; PERFORMANCE; STORAGE; FILMS; NANOCOMPOSITE; CHALLENGES; ELECTRODES; CAPACITY; AREA
虎门体育官方登录入口网:作者信息
通讯作者地址:Zhu, M (通讯作者)
| S China Univ Technol, Sch Mat Sci & Engn, Guangzhou 510641, Guangdong, Peoples R China. |
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电子邮件地址:memzhu@scut.edu.cn
虎门体育官方登录入口网:出版商
虎门体育官方登录入口网:类别分类
研究方向:Chemistry; Energy & Fuels; Materials Science
Web of Science 类别:Chemistry, Physical; Energy & Fuels; Materials Science, Multidisciplinary
