Bimetallic NiO/Mn2O3 nano-pyramids as battery-type electrode material for high-performance supercapacitor application

材料科学 超级电容器 电极 非阻塞I/O 电化学 电解质 双金属片 化学工程 氧化物 氧化镍 电容 假电容器 纳米技术 化学 冶金 催化作用 生物化学 物理化学 金属 工程类
作者
Sara Yaseen,Abdul Ghafar Wattoo,Abid Inayat,Tauseef Shahid,Mohammed Rafi Shaik,Mujeeb Khan,Zeng Song,Syed Mustansar Abbas
出处
期刊:Electrochimica Acta [Elsevier BV]
卷期号:470: 143340-143340
标识
DOI:10.1016/j.electacta.2023.143340
摘要

Herein, we report the synthesis of bimetallic oxide (NiO/Mn2O3) as an efficient positive electrode for supercapacitor application prepared by a facile one-step composite hydroxide-mediated approach. Exceptional electrochemical performance has been achieved by optimizing the composition, structure, and morphology. Simple cubic crystal structure with bipyramid surface morphology provided a large specific surface area and more active sites for rapid transfer of ions between electrolyte and electrode. The electrochemical performance of prepared electrodes was examined in a three-electrode system, where nickel foam was used as a conductive support. From the electrochemical measurements, the NiO-50% Mn2O3 exhibited the highest specific capacitance of 1730.5 F g−1 at a current density of 1.5 A g−1 in a 3M aqueous KOH electrolyte. The optimized electrode showed long-term cycling stability of 4000 charge-discharge cycles at a high retention rate of 97.5% at 10 A g−1, which supports the excellent performance of the electrode and robust stability. Hence, owing to its unique bipyramid-like morphology, outstanding performance, and easy one-step synthesis process, NiO/Mn2O3 bimetallic oxide can be considered an excellent candidate for supercapacitor electrodes. This method provides an efficient hybridization methodology for the design of high-performance electrode materials for advanced energy storage devices.
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