High-energy aqueous supercapacitors enabled by N/O codoped carbon nanosheets and “water-in-salt” electrolyte

被引:2
|
作者
Jingjing Yan [1 ]
Ling Miao [2 ]
Hui Duan [2 ]
Dazhang Zhu [2 ]
Yaokang Lv [3 ]
Liangchun Li [2 ]
Lihua Gan [2 ]
Mingxian Liu [2 ,4 ]
机构
[1] School of Chemical Engineering, Anhui University of Science and Technology
[2] Shanghai Key Lab of Chemical Assessment and Sustainability, School of Chemical Science and Engineering, Tongji University
[3] College of Chemical Engineering, Zhejiang University of Technology
[4] College of Chemistry and Molecular Engineering, Zhengzhou University
基金
中央高校基本科研业务费专项资金资助; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TM53 [电容器]; O643.36 [催化剂];
学科分类号
080801 ; 081705 ;
摘要
A facile fabrication strategy is reported to obtain N/O codoped porous carbon nanosheets for purpose of ameliorating the charge transfer and accumulation in the concentrated Li TFSI(lithium bis(trifluoromethane sulfonyl)imide) electrolyte. By tunning the feed ratio of comonomers, the porous nanosheet structure is endowed with a significant ion-adsorption surface area(1630 m~2/g) and interconnected hierarchical porosity; meanwhile, high-level N/O dopants(N: 3.58 at%, O: 12.91 at%) increase the effective contact area for electrolyte ions, and further facilitate rapid ion/electron transfer. Benefiting from the advantageous features, carbon nanosheets electrode reveal an enhanced specific capacitance(375 F/g)in three-electrode configuration and the H2SO4-based device yields a high gravimetric energy density of 11.4 Wh/kg. Particularly, the ion-diffusion highways in porous carbon nanosheets contribute to the 2.25V Li TFSI-based symmetric device with a high energy delivery up to 33.1 Wh/kg. This work offers an inspiring strategy for facile fabrication of carbon nanosheets, and demonstrates their promising application in “water-in-salt” electrolyte-based supercapacitor systems.
引用
收藏
页码:2681 / 2686
页数:6
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