Metal Organic Framework Derived Core–Shell Structured Co9S8@N–C@MoS2 Nanocubes for Supercapacitor

Transition metal sulfides with designed nanostructure have attracted significant research interest as electrode materials for supercapacitors. In this work, core–shell structured Co9S8@N–C@MoS2 nanocubes have been successfully fabricated through a sulfuration process based on ZIF-67 precursor. Due t...

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Veröffentlicht in:ACS applied energy materials 2018-07, Vol.1 (7), p.3513-3520
Hauptverfasser: Hou, Xiaocheng, Zhang, Yizhou, Dong, Qiuchun, Hong, Ying, Liu, Yunlong, Wang, Wenjun, Shao, Jinjun, Si, Weili, Dong, Xiaochen
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Sprache:eng
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Zusammenfassung:Transition metal sulfides with designed nanostructure have attracted significant research interest as electrode materials for supercapacitors. In this work, core–shell structured Co9S8@N–C@MoS2 nanocubes have been successfully fabricated through a sulfuration process based on ZIF-67 precursor. Due to improved electrical conductivity and large surface area, Co9S8@N–C@MoS2 nanocubes with core–shell heterostructure exhibit better electrochemical performance in supercapacitors compared with Co9S8. Moreover, the morphology of core–shell structured Co9S8@N–C@MoS2 nanocubes can be well-adjusted by tuning the ratio between Co9S8 and MoS2. The homogeneous core–shell structured Co9S8@N–C@MoS2 nanocubes (S-3) can be obtained with the mass ratio of Na2MoO4·2H2O and CH4N2S at 1:2. And the obtained core–shell structured S-3 delivers a high specific capacitance of 410.0 F g–1 at the current density of 10.0 A g–1 after 20000 cycles with excellent cycling stability (101.7% of the initial value). The excellent electrochemical property is mainly due to the unique structure which induces synergistic effects between Co9S8 and MoS2.
ISSN:2574-0962
2574-0962
DOI:10.1021/acsaem.8b00773