High performance supercapattery using zinc oxide-carbon black hybrid material in aqueous salt electrolyte

This work demonstrates the development of a binder-free, stable, cost-effective and scalable supercapattery using Zinc Oxide and Carbon Black (ZnO-CB) hybrid material as the cathode. Herein, we have employed aluminium foil as the anode free current collector and aqueous NaCl as the electrolyte to fabricate the device which functions in a wide electrochemical potential window of 2 V. Pseudocapacitive charge storage linked to reversible surface redox processes of ZnO in aqueous electrolyte and electric double-layer capacitance caused by Na + /Cl − ion adsorption combines to provide supercapattery behaviour. Thus, the as prepared supercapattery device with 2 wt% ZnO with uniform morphology offers a specific capacity (C s ) of 117.89 C/g with a high energy density of 65.49 Wh/kg and an ultrahigh power density of 1544 W/kg even at a current density of 10 A/g, surpassing many reported supercapattery. Further, the device shows excellent capacity retention of nearly 100% of its initial capacity after 1000 charge discharge cycles.

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Publication Details

Journal
Journal of Energy Storage
Published
2026-09-11
DOI
https://doi.org/10.1016/j.est.2026.124515
Primary Topic
Layered Double Hydroxides Synthesis and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

High performance supercapattery using zinc oxide-carbon black hybrid material in aqueous salt electrolyte

Om Krishna Swarupa, Swagatika Sahu, Moksyaraj Bhoi, Susanta Kumar Das et al.
Journal of Energy Storage
Layered Double Hydroxides Synthesis and Applications
article

High performance supercapattery using zinc oxide-carbon black hybrid material in aqueous salt electrolyte

Om Krishna Swarupa, Swagatika Sahu, Moksyaraj Bhoi, Susanta Kumar Das, Amaresh Mishra
article en

Abstract

This work demonstrates the development of a binder-free, stable, cost-effective and scalable supercapattery using Zinc Oxide and Carbon Black (ZnO-CB) hybrid material as the cathode. Herein, we have employed aluminium foil as the anode free current collector and aqueous NaCl as the electrolyte to fabricate the device which functions in a wide electrochemical potential window of 2 V. Pseudocapacitive charge storage linked to reversible surface redox processes of ZnO in aqueous electrolyte and electric double-layer capacitance caused by Na + /Cl − ion adsorption combines to provide supercapattery behaviour. Thus, the as prepared supercapattery device with 2 wt% ZnO with uniform morphology offers a specific capacity (C s ) of 117.89 C/g with a high energy density of 65.49 Wh/kg and an ultrahigh power density of 1544 W/kg even at a current density of 10 A/g, surpassing many reported supercapattery. Further, the device shows excellent capacity retention of nearly 100% of its initial capacity after 1000 charge discharge cycles.

Journal of Energy StorageVol. 181
Sambalpur University (IN), Energy Storage Systems (United States) (US)
University Grants Commission
Openalex Percentile: Top 25%
Layered Double Hydroxides Synthesis and Applications
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High performance supercapattery using zinc oxide-carbon black hybrid material in aqueous salt electrolyte — Om Krishna Swarupa, Swagatika Sahu, et al. · Journal of Energy Storage (2026) | TGRS Research Map | TGRS