Architecture engineering of supercapacitor electrode materials

Author:

Chen Kunfeng1ORCID,Li Gong2,Xue Dongfeng1

Affiliation:

1. State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China

2. Department of Chemistry, Yanbian University, Yanji 133002, P. R. China

Abstract

The biggest challenge for today’s supercapacitor systems readily possessing high power density is their low energy density. Their electrode materials with controllable structure, specific surface area, electronic conductivity, and oxidation state, have long been highlighted. Architecture engineering of functional electrode materials toward powerful supercapacitor systems is becoming a big fashion in the community. The construction of ion-accessible tunnel structures can microscopically increase the specific capacitance and materials utilization; stiff 3D structures with high specific surface area can macroscopically assure high specific capacitance. Many exciting findings in electrode materials mainly focus on the construction of ice-folded graphene paper, in situ functionalized graphene, in situ crystallizing colloidal ionic particles and polymorphic metal oxides. This feature paper highlights some recent architecture engineering strategies toward high-energy supercapacitor electrode systems, including electric double-layer capacitance (EDLC) and pseudocapacitance.

Funder

National Natural Science Foundation of China

National Natural Science Foundation for Creative Research Group

External Cooperation Program of BIC, Chinese Academy of Sciences

Hundred Talents Program of the Chinese Academy of Sciences

Publisher

World Scientific Pub Co Pte Lt

Subject

General Materials Science

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