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:Liu, J (Liu, Jun)[2,3 ]; Kopold, P (Kopold, Peter)[2 ]; Wu, C (Wu, Chao)[2 ]; van Aken, PA (van Aken, Peter A.)[2 ]; Maier, J (Maier, Joachim)[2 ]; Yu, Y (Yu, Yan)[1,2 ]
虎门体育官方登录入口网:期刊信息
虎门体育官方登录入口网:摘要
Uniform yolk-shell Sn4P3@C nanospheres were facilely synthesized via a top-down phosphorized route with yolk-shell Sn@C nanospheres as the precursor. As anode materials for Na-ion batteries, they exhibit very high reversible capacity (790 mA h g(-1)), superior rate capability (reversible capabilities of 720, 651, 581, 505, and 421 mA h g(-1) at 0.2C, 0.4C, 0.8C, 1.5C, and 3C, respectively) and stable cycling performance (a high capacity of 360 mA h g(-1) at 1.5C after long 400 cycles).
虎门体育官方登录入口网:关键词
KeyWords Plus:SUPERIOR RATE CAPABILITY; LI-ION; LOW-COST; CATHODE MATERIALS; TIN PHOSPHIDE; LONG-LIFE; SOLVOTHERMAL ROUTE; LITHIUM BATTERIES; RED PHOSPHORUS; HOLLOW CARBON
虎门体育官方登录入口网:作者信息
通讯作者地址:Liu, J (通讯作者)
| Max Planck Inst Solid State Res, Heisenbergstr 1, D-70569 Stuttgart, Germany. |
地址:
电子邮件地址:yanyumse@ustc.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; Engineering; Environmental Sciences & Ecology
Web of Science 类别:Chemistry, Multidisciplinary; Energy & Fuels; Engineering, Chemical; Environmental Sciences
