Photo-Supercapacitors Based on Zinc Oxide/Mxene Paper Dual Acting Electrodes

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Date

2024

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Elsevier Ltd

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Green Open Access

Yes

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Abstract

Photo-supercapacitors (PSCs) have great potential as devices that enable both the conversion and storage of solar energy. However, it remains challenging to design new dual-acting electrodes providing high energy density and capacitance with self-powering capacity. Herein, we successfully prepared dual electrodes using ZnO-nanoflake and Ti3C2Tx-based MXene paper. By utilization of the MXene to the PSC device, capacitive contribution to the total capacitance increased ∼4 times compared to the bare ZnO-nanoflake-based PSC due to the surface redox reactions and electrically double layer formation. Maximum energy and power density of 57.3 μWhcm−2 and 11.1 mWcm−2, respectively were obtained for ZnO/MXene//MXene-PSC@UV irradiation and at a 2.5 V. Areal capacitance of this device calculated from CV was as high as 151.5 mFcm−2. Moreover, the ZnO/MXene//MXene-PSC device was highly stable over 10,000 GCD cycles with 100 % CE and 98 % Cp-retention under daylight. © 2024 Elsevier Ltd

Description

Keywords

MXene, Photo-supercapacitor, Solar energy, Zinc oxide, Capacitance, Electrodes, II-VI semiconductors, Irradiation, Redox reactions, Solar energy, Surface reactions, Zinc oxide, Double layer formation, Dual electrodes, Energy density, Higher energy density, Maximum power, Mxene, Photo-supercapacitor, Power densities, Self-powering, ZnO nanoflakes, Supercapacitor, Supercapacitor, Photo-supercapacitor, Dual electrodes, Capacitance, Power densities, 600, II-VI semiconductors, Maximum power, Mxene, Higher energy density, Energy density, Solar energy, Double layer formation, Zinc oxide, Self-powering, Irradiation, Redox reactions, MXene, Electrodes, Surface reactions, ZnO nanoflakes

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Source

Journal of Energy Storage

Volume

86

Issue

Start Page

111274

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CrossRef : 8

Scopus : 20

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Mendeley Readers : 33

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