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用于高性能超级电容器的石墨铅笔电极的可控电化学表面剥落

Controlled electrochemical surface exfoliation of graphite pencil electrodes for high-performance supercapacitors.

作者信息

AbdelHamid Ayman A, Elgamouz Abdelaziz, Kawde Abdel-Nasser

机构信息

Pure and Applied Chemistry Group, Department of Chemistry, College of Sciences, University of Sharjah P.O. Box 27272 Sharjah United Arab Emirates

出版信息

RSC Adv. 2023 Jul 14;13(31):21300-21312. doi: 10.1039/d3ra03952h. eCollection 2023 Jul 12.

Abstract

A controlled surface exfoliation method for graphite pencil electrodes using an environmentally friendly, low cost and scalable electrochemical process is reported. A simple direct current power supply in a neutral medium is used for inducing graphene formation on the electrode surface in a controlled manner. The electrochemical properties of the surface exfoliated electrode are characterized, displaying a >300× increase in the electrochemical surface area and >50× decrease in the electrode resistance after exfoliation. The surface graphene layer is characterized using electron microscopy, Raman, infrared, X-ray photoelectron, and energy dispersive X-ray spectroscopies and X-ray diffractometry showing a fully exfoliated surface, formation of surface defects and mild surface graphene oxidation while maintaining an intact graphitic crystal structure. The surface exfoliated electrode is tested as a supercapacitor demonstrating more than 2 orders of magnitude improvement over non-exfoliated electrode in both 3-electrode and 2-electrode setups and achieving a high areal capacitance of ∼54 mF cm. The benign nature, low cost, scalability of our controlled surface exfoliation methodology, and its significant impact on the electrochemical properties of the electrode make it very promising for further investigation in various applications such as energy storage and conversion, sensors, and catalysis.

摘要

报道了一种使用环保、低成本且可扩展的电化学过程对石墨铅笔电极进行可控表面剥离的方法。在中性介质中使用简单的直流电源以可控方式在电极表面诱导石墨烯形成。对表面剥离电极的电化学性质进行了表征,结果显示剥离后电化学表面积增加了>300倍,电极电阻降低了>50倍。使用电子显微镜、拉曼光谱、红外光谱、X射线光电子能谱、能量色散X射线光谱和X射线衍射对表面石墨烯层进行了表征,结果表明表面完全剥离,形成了表面缺陷且表面石墨烯有轻度氧化,同时保持了完整的石墨晶体结构。将表面剥离电极作为超级电容器进行测试,结果表明在三电极和两电极设置中,与未剥离电极相比,性能提高了两个以上数量级,并实现了约54 mF/cm²的高面积电容。我们的可控表面剥离方法具有良好的性质、低成本、可扩展性,并且对电极的电化学性质有显著影响,这使其在能量存储与转换、传感器和催化等各种应用中具有很大的进一步研究潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9741/10346469/d9608a39da38/d3ra03952h-f1.jpg

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