Tailoring superficial morphology, defect and functional group of commercial carbon cloth for a flexible, stable and high-capacity anode in sodium ion battery

被引:25
作者
Long, Bei [1 ,2 ]
Ma, Junfei [1 ]
Song, Ting [1 ]
Wang, Xianyou [1 ]
Tong, Yexiang [2 ]
机构
[1] Xiangtan Univ, Natl Local Joint Engn Lab Key Mat New Energy Stor, Sch Chem,Natl Base Int Sci & Technol Cooperat, Hunan Prov Key Lab Electrochem Energy Storage & C, Xiangtan 411105, Peoples R China
[2] Sun Yat Sen Univ, KLGHEI Environm & Energy Chem, Key Lab Low Carbon Chem & Energy Conservat Guangd, Sch Chem,MOE Key Lab Bioinorgan & Synthet Chem, Guangzhou 510275, Peoples R China
基金
中国博士后科学基金;
关键词
N and S codoped porous carbon cloth; Stable active defect; Enhanced Na+ adsorption; Long cyclic life; Flexible anode; HARD CARBON; ENERGY-STORAGE; POROUS CARBON; DOPED CARBON; CYCLE-LIFE; PERFORMANCE; GRAPHENE; CATHODE;
D O I
10.1016/j.electacta.2021.137934
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Developing a flexible hard carbon-based anode is very important for the flexible sodium ion battery. Here, a porous carbon cloth with lots of defects and C=O functional groups is prepared by combining the thermal etching with oxidation-exfoliation method. The partial graphitization and N and S codoping improve the conductivity and electrochemical properties. Multi-step modifications stabilize the defects, which is proved by in situ Raman and leads to the enhanced initial coulombic efficiency. Benefiting from the increased interlayer distance, C= O functional group, pore and defect, the Na+ adsorption (sloping region in discharging curve) plays an important role in Na+ storage process specially at high current density. In comparison with other hard carbon materials (0.40 V), the low midpoint voltages in sloping region of carbon cloth-derived electrodes (0.11 V) promote the energy density of full cell. The optimized electrode based on the total weight of electrode exhibits a high discharging capacity (0.983 mAh cm(-2) at 0.2 mA cm(-2) or 98.3 mAh g(-1) at 20 mA g(-1)) and a long-term cycling performance (91.6% capacity retention after 10 00 cycles at 0.6 mA cm(-2)). The high reversible capacity of coin-type full cell (approximate to 0.515 mAh cm(-2) at 0.2 mA cm(-2)) and the outstanding flexibility of pouch cell further reveal its potential. (c) 2021 Elsevier Ltd. All rights reserved.
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页数:8
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