Encapsulating Red Phosphorus in Ultralarge Pore Volume Hierarchical Porous Carbon Nanospheres for Lithium/Sodium-Ion Half/Full Batteries

被引:109
|
作者
Liu, Bingqiu [1 ]
Zhang, Qi [1 ]
Li, Lu [1 ]
Jin, Zhanshuang [1 ]
Wang, Chungang [1 ]
Zhang, Lingyu [1 ]
Su, Zhong-Min [1 ,2 ]
机构
[1] Northeast Normal Univ, Dept Chem, 5268 Renmin St, Changchun 130024, Jilin, Peoples R China
[2] Changchun Univ Sci & Technol, Sch Chem & Environm Engn, Changchun 130022, Jilin, Peoples R China
基金
中国国家自然科学基金;
关键词
ultrasmall red phosphorus; ultralarge pore volume; micro-mesopores; high capacity and long life; lithium/sodium-ion half/full batteries; ANODE MATERIALS; HIGH-CAPACITY; POLYDOPAMINE; COMPOSITE; HOLLOW;
D O I
10.1021/acsnano.9b07428
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Red phosphorus (P) has been recognized as a promising material for lithium/sodium-ion batteries (LIBs/SIBs) because of their high theoretical capacity. However, tremendous volume variation and low conductivity limit its widespread applications. Hence, we design and synthesize uniformly distributed honeycomb like hierarchical micro-mesoporous carbon nanospheres (HHPCNSs) with ultralarge pore volume (3.258 cm(3) g(-1)) on a large scale through a facile way. The large pore volume provides enough space for loading of P and the expansion of P, and the uniform distribution of the micro-mesopores enables the red P to load uniformly. The resulting HHPCNSs/P composite exhibits extremely high capacity (2463.8 and 2367.6 mA h g(-1) at 0.1 A g(-1) for LIBs and SIBs, respectively), splendid rate performance (842.2 and 831.1 mA h g(-1) at 10 A g(-1) for LIBs and SIBs, respectively) and superior cycling stability (1201.6 and 938.4 mA h g(-1) at 2 and 5 A g(-1) after 1000 cycles for LIBs and 1269.4 and 861.8 mA h g(-1) at 2 and 5 A g(-1) after 1000 cycles for SIBs, respectively). More importantly, when coupled with LiFePO4 and Na3V2(PO4)(3) cathode, lithium/sodium-ion full batteries display high capacity and superior rate and cycling performances, revealing the practicability of the HHPCNSs/P composite. The exceptional electrochemical performance is caused by the honeycomb-like carbon network with ultralarge pore volume, uniformly distributed hierarchical micro-mesoporous nanostructure, outstanding electronic conductivity, and excellent nanostnictural stability, which is much better than currently reported P/C materials for both LIBs and SIBs.
引用
收藏
页码:13513 / 13523
页数:11
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