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Featured researches published by angchun Li.


Journal of Materials Chemistry | 2018

A general strategy to synthesize high-level N-doped porous carbons via Schiff-base chemistry for supercapacitors

Dazhang Zhu; Juxiang Jiang; Dongmei Sun; Xiaoyu Qian; Yawei Wang; Liangchun Li; Zhiwei Wang; Xiaolan Chai; Lihua Gan; Mingxian Liu

Recently, the synthesis of porous carbon-based materials, especially those with unique geometry, narrow pore size distribution, large surface area and high nitrogen content, has been highly attractive for widespread applications, but remains a great challenge. Herein, we demonstrate a novel strategy for highly efficient synthesis of high-level N-doped microporous carbon spheres (N-MCSs) based on a very simple Schiff-base reaction of 3,3′-diaminobenzidine and p-phthalaldehyde in ethanol solvent without any catalyst or tedious procedure, followed by a common one-step carbonization–activation process. The N-MCSs exhibit a spherical morphology, regular micropores, high surface areas and high nitrogen contents (up to 8.71 at%). N-MCSs used as supercapacitor electrodes deliver high gravimetric capacitance, good rate capability and cycling stability. More importantly, the synthetic approach can be extended to other Schiff-base systems such as p-phthalaldehyde and p-phenylenediamine or ethylenediamine to fabricate porous carbon-based materials with high nitrogen species, tunable morphology and pore structure. The general strategy presented in this study opens up a new window for heteroatom doping, geometry and structure control, and highlights the great potential of well-developed carbon-based materials for extensive applications.


Electrochimica Acta | 2016

Nitrogen-containing ultramicroporous carbon nanospheres for high performance supercapacitor electrodes

Wenjing Lu; Mingxian Liu; Ling Miao; Dazhang Zhu; Xin Wang; Hui Duan; Zhiwei Wang; Liangchun Li; Zijie Xu; Lihua Gan; Longwu Chen


Chemical Engineering Journal | 2017

Encapsulation of NiO nanoparticles in mesoporous carbon nanospheres for advanced energy storage

Mingxian Liu; Xin Wang; Dazhang Zhu; Liangchun Li; Hui Duan; Zijie Xu; Zhiwei Wang; Lihua Gan


Chemical Engineering Journal | 2017

Core–shell reduced graphene oxide/MnOx@carbon hollow nanospheres for high performance supercapacitor electrodes

Mingxian Liu; Mengchen Shi; Wenjing Lu; Dazhang Zhu; Liangchun Li; Lihua Gan


Microporous and Mesoporous Materials | 2017

Design of carbon materials with ultramicro-, supermicro- and mesopores using solvent- and self-template strategy for supercapacitors

Ling Miao; Dazhang Zhu; Yunhui Zhao; Mingxian Liu; Hui Duan; Wei Xiong; Quanjing Zhu; Liangchun Li; Yaokang Lv; Lihua Gan


Chinese Chemical Letters | 2017

Synthesis of MnO2/N-doped ultramicroporous carbon nanospheres for high-performance supercapacitor electrodes

Wenjing Lu; Shi-Ze Huang; Ling Miao; Mingxian Liu; Dazhang Zhu; Liangchun Li; Hui Duan; Zijie Xu; Lihua Gan


Chemical Engineering Journal | 2017

Poly(ionic liquid)-derived, N, S-codoped ultramicroporous carbon nanoparticles for supercapacitors

Ling Miao; Hui Duan; Mingxian Liu; Wenjing Lu; Dazhang Zhu; Tao Chen; Liangchun Li; Lihua Gan


Electrochimica Acta | 2018

N, S Co-doped hierarchical porous carbon rods derived from protic salt: Facile synthesis for high energy density supercapacitors

Ling Miao; Dazhang Zhu; Mingxian Liu; Hui Duan; Zhiwei Wang; Yaokang Lv; Wei Xiong; Quanjing Zhu; Liangchun Li; Xiaolan Chai; Lihua Gan


Materials Chemistry and Physics | 2018

Ultramicroporous carbon nanoparticles derived from metal–organic framework nanoparticles for high-performance supercapacitors

Mingxian Liu; Fangle Zhao; Dazhang Zhu; Hui Duan; Yaokang Lv; Liangchun Li; Lihua Gan


Chemical Engineering Journal | 2018

Cooking carbon with protic salt: Nitrogen and sulfur self-doped porous carbon nanosheets for supercapacitors

Ling Miao; Dazhang Zhu; Mingxian Liu; Hui Duan; Zhiwei Wang; Yaokang Lv; Wei Xiong; Quanjing Zhu; Liangchun Li; Xiaolan Chai; Lihua Gan

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Yaokang Lv

Zhejiang University of Technology

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Wei Xiong

Wuhan Institute of Technology

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