Heteroatom (N, P)-driven carbon nanomaterials for high-energy storage in supercapacitors

Author:

Liu Yong1,Zhang Xian1,Zhang Ke1,Wang Zifeng1,Li Guang2

Affiliation:

1. School of Electronic Engineering, Huainan Normal University, Huainan 232038, P. R. China

2. School of Materials Science and Engineering, Anhui Key Laboratory of Information Materials and Devices Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education Institute of Physical Science and Information Technology, Anhui University, Hefei 230601, P. R. China

Abstract

Nanoflower-like hollow carbon sphere (CS) materials with two different heteroatoms doping (N, P) were prepared by a simple synthetic method (NPCS). The specific surface area of NPCS can reach a high value of 396 m2/g. The NPCS has a high degree of hollowness and the self-assembled nanosheet of NPCS forms a fast electron transport channel, and also increases active area in contact with electrolyte. The doping of heteroatoms increases the defect level of the carbon-based nanomaterials and changes the local electron state of the material, thus forming storage sites on the surface of the material, which can be used as a station for ions collecting and distributing. The material was studied as an active material for supercapacitors, and the specific capacitance reached 274.9 F/g. After the 4000th cycle stability test, it still maintained 95.2% of the specific capacitance, indicating that the material has excellent properties of supercapacitor materials.

Funder

GCCRCKYQDJ

Natural Science Foundation in Universities of Anhui Province

Publisher

World Scientific Pub Co Pte Ltd

Subject

General Materials Science

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