Co3O4 nanoparticles synthesized with rotten-grape extract for use in supercapacitors and oxygen evolution devices

IF 6 Q1 ENGINEERING, MULTIDISCIPLINARY Results in Engineering Pub Date : 2024-09-17 DOI:10.1016/j.rineng.2024.102922
Asma Hayat , Aneela Tahira , Muhammad Ali Bhatti , Irum Naz , Aqeel Ahmed Shah , Elmuez Dawi , Matteo Tonezzer , Ayman Nafady , Riyadh H. Alshammari , Zafar Hussain Ibupoto
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Abstract

Phytochemicals in grape fruit juice have never been considered as potential sources of surface modification, shape modification, and energy storage. In our study, we demonstrate the hydrothermal synthesis of Co3O4 nanostructures from grape fruit extracts. X-ray diffraction analysis revealed that Co3O4 nanostructures exhibit a cubic phase, while Fourier transform infrared spectroscopy identified several functional groups. An analysis of Co3O4 nanostructures using a scanning electron microscope revealed that uniformly distributed nanoparticles of Co3O4 were trapped in the carbon content of the spices during calcination. UV–visible spectrometer analysis of Co3O4 nanostructures reveals a wide range of optical bands. It was found that one mL of grape fruit juice provided the lowest optical band gap of 2.51 eV for Co3O4 nanostructures. Nanostructures of Co3O4 were studied under alkaline conditions for use in supercapacitors and oxygen evolution reactions. An aqueous solution containing 1 mL of assisted Co3O4 nanostructures exhibited an overpotential of 290 mV at a current density of 10 mA cm−2 in 1 M KOH. In addition, they showed a Tafel slope of 80 mV dec−1. When dissolved in 3 M KOH electrolyte, grape fruit juice assisted Co3O4 nanostructures showed a specific capacitance of 867 F/g at 1.5 A/g in 3 M KOH aqueous solution. A specific capacitance retention percentage of about 101.1 % was achieved after 40000 galvanic charge-discharge cycles. It has been shown that the total photochemistry of biomass waste can be tuned and enhanced to enhance the functional properties of nanostructures derived from rotten grape fruit extract in order to develop functional materials with high performance for a wide range of applications.

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用烂葡萄提取物合成的 Co3O4 纳米粒子在超级电容器和氧气进化装置中的应用
葡萄果汁中的植物化学物质从未被认为是表面改性、形状改性和能量存储的潜在来源。在我们的研究中,我们展示了从葡萄果实提取物中水热合成 Co3O4 纳米结构的方法。X 射线衍射分析表明,Co3O4 纳米结构呈现立方相,而傅立叶变换红外光谱则确定了几个官能团。使用扫描电子显微镜对 Co3O4 纳米结构进行的分析表明,在煅烧过程中,均匀分布的 Co3O4 纳米颗粒被困在香料的碳成分中。对 Co3O4 纳米结构的紫外-可见光谱分析显示了广泛的光学波段。研究发现,一毫升葡萄果汁可为 Co3O4 纳米结构提供 2.51 eV 的最低光带隙。在碱性条件下研究了用于超级电容器和氧进化反应的 Co3O4 纳米结构。在 1 M KOH 中,当电流密度为 10 mA cm-2 时,含有 1 mL 辅助 Co3O4 纳米结构的水溶液显示出 290 mV 的过电位。此外,它们的塔菲尔斜率为 80 mV dec-1。当溶解在 3 M KOH 电解液中时,葡萄果汁辅助 Co3O4 纳米结构在 3 M KOH 水溶液中的比电容为 867 F/g,电流密度为 1.5 A/g。经过 40000 次电化学充放电循环后,比电容保持率达到约 101.1%。研究表明,可以通过调整和增强生物质废物的全光化学特性来提高从烂葡萄果实提取物中提取的纳米结构的功能特性,从而开发出具有高性能的功能材料,广泛应用于各种领域。
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来源期刊
Results in Engineering
Results in Engineering Engineering-Engineering (all)
CiteScore
5.80
自引率
34.00%
发文量
441
审稿时长
47 days
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