4.7 Article

Electrodeposited crumpled MoS2 nanoflakes for asymmetric supercapacitor

期刊

CERAMICS INTERNATIONAL
卷 48, 期 19, 页码 29002-29010

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2022.04.208

关键词

Molybdenum sulfide; Electrodeposition; Asymmetric supercapacitor device; Charge storage kinetics; Nanoflakes

资金

  1. National Research Foundation of Korea [NRF-2020R1A2C1015206, NRF-2019M3F5A1A01077146, NRF2021M3H4A1A0 2051331]

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Transition metal chalcogenides, specifically molybdenum disulfide (MoS2), have attracted attention in the field of energy storage due to their unique properties. In this study, MoS2 was successfully deposited on Ni foam using a one-step electrode-position method, resulting in an interconnected crumpled-nanoflake structure. The MoS2 electrodes exhibited excellent electrochemical performance, with a maximum areal capacitance of 416.9 mFcm?2. An asymmetric device constructed with MoS2 and activated carbon as electrodes showed promising energy storage capabilities, with an areal capacitance of 277.3 mFcm(-2) and energy density of 0.15 mWhcm(-2) at 5.33 mWcm(-2) power density. Furthermore, the device demonstrated high cyclability and coulombic efficiency, making MoS2 and MoS2//AC devices potential candidates for emerging energy storage applications.
Transition metal chalcogenides are gaining attraction in the emerging energy-storing field owing to their captivating properties. Molybdenum disulfide (MoS2) was deposited on Ni foam by using a one-step electrode -position method. X-ray diffraction study showed that the deposited MoS2 was amorphous, and X-ray photo-electron spectroscopy confirms the presence of Mo and S in the 4+ and 2+ oxidation states. Different nanostructures were observed by varying the deposition time, and MoS2 deposited for 300 s has an inter-connected crumpled-nanoflake structure. The electrochemical performance of MoS2 electrodes was investigated between 0.2 and 1 V vs. SCE potential in 1M Na2SO4 electrolyte and the interconnected crumpled-nanoflake structure showed a maximum areal capacitance of 416.9 mFcm? 2 at a current density of 1 mAcm? 2. The charge storage kinetics of electrodes showed the diffusion-controlled contribution is greater than the capacitive -controlled contribution for MS-300 electrode. Also capacitive-controlled contribution is proportional to the scan rates. An asymmetric device was assembled using activated carbon and MoS2 as negative and positive electrodes respectively, which exhibited an areal capacitance of 277.3 mFcm(-2) and energy density of 0.15 mWhcm(-2) at 5.33 mWcm(-2) power density measured at 3 mAcm(-2) current density. Furthermore, 90.1% cyclability and excellent coulombic efficiency measured up to 3000 cycles were observed for an asymmetric device. These results depict the potential candidature of MoS2 and MoS2//AC devices as an emerging energy storing devices.

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