A new synthetic route to hollow Co3O4 octahedra for supercapacitor applications

Citations

WEB OF SCIENCE

99
Citations

SCOPUS

99

초록

Co3O4 hollow octahedra were successfully synthesized via a facile one-step solvothermal route. Time-resolved electron microscopy and X-ray diffraction analyses revealed that the Co3O4 hollow octahedra were formed through the self-assembly of primary nanocrystals followed by subsequent Ostwald ripening. Subtle control over the reaction conditions led to different morphologies (hexagonal plates and nanocubes) and crystal structures (beta-Co(OH)(2)-Co3O4 composite). The unique hollow nanostructure rendered our Co3O4 potentially useful for charge-storage applications. To prove its usefulness, the pseudocapacitive performance of the Co3O4 hollow octahedra as a supercapacitor electrode was evaluated and exhibited a charge storage capacity of 192 F g(-1) with good long-term cyclability.

키워드

NI FOAMOXYHYDROXIDESPHERESGROWTHELECTROCHEMICAL CAPACITORSLITHIUM STORAGE PROPERTIESCARBON-FIBER PAPERNANOWIRE ARRAYSFABRICATIONHIGH-PERFORMANCE SUPERCAPACITORHIGH-PERFORMANCE SUPERCAPACITORCARBON-FIBER PAPERNANOWIRE ARRAYSNI FOAMGROWTHFABRICATIONMESOCRYSTALSNANOPARTICLESCAPACITANCENI(OH)(2)
제목
A new synthetic route to hollow Co3O4 octahedra for supercapacitor applications
저자
Cao, YuebinYuan, FangliYao, MingshuiBang, Jin HoLee, Jung-Ho
DOI
10.1039/c3ce41840e
발행일
2013-11
유형
Article
저널명
CrystEngComm
16
5
페이지
826 ~ 833