Alburaih H A, Manzoor Sumaira, Abdullah M, Ashiq M N, Aman Salma, Trukhanov Sergei V, Zubar Tatiana I, Sun Zhipeng, Taha T A, Trukhanov Alex V
Department of Physics, College of Science, Princess Nourah bint Abdulrahman University P.O. Box 84428 Riyadh 11671 Saudi Arabia.
Institute of Chemical Sciences, Bahauddin Zakariya University Multan 60800 Pakistan.
RSC Adv. 2023 Mar 15;13(13):8736-8742. doi: 10.1039/d2ra07661f. eCollection 2023 Mar 14.
It is common knowledge that the O evolution reaction (OER) is a crucial half-reaction in the electrolysis of water. However, it is currently difficult to create inexpensive OER electrode materials in a way that is efficient, simple, and environmentally friendly. In this research, metal oxy-hydroxides with numerous oxygen defects (M-OOHv) are created at surface of Cu foam (CF) using a unique, straightforward electro-oxidation reconstitution (ER) process. Different spectroscopic and microscopy methods are used to analyse the electrode characteristics of AlCu-MOF@M-OOHv-ER/CF; electrochemical measurements display a lower overpotential () of 366 mV @ 10 mA cm and a Tafel slope of 95.2 mV dec in 1.0 M KOH. X-Ray diffraction (XRD), scanning electron microscopy (SEM), and Raman studies confirm the phase transition of the metal-organic framework (MOF) to the M-OOH, which acts as the active site to boost the OER activity. Through spectroscopic and microscopic investigations, it is determined that the efficiency of bimetallic electrode materials and oxygen vacancies in the M-OOHv have an impact on the electron power density. The manufactured electrode material additionally showed good durability for 50 hours. As a result, the newly developed AlCu-MOF@M-OOHv-ER/CF nanomaterial has greater potential for both electrolysis of water and other energy storage equipment.
众所周知,析氧反应(OER)是水电解中的关键半反应。然而,目前难以以高效、简单且环保的方式制备廉价的OER电极材料。在本研究中,使用独特、简单的电氧化重构(ER)工艺在泡沫铜(CF)表面制备了具有大量氧缺陷的金属羟基氧化物(M - OOHv)。采用不同的光谱和显微镜方法分析AlCu - MOF@M - OOHv - ER/CF的电极特性;电化学测量显示在1.0 M KOH中,在10 mA cm时过电位(η)较低,为366 mV,塔菲尔斜率为95.2 mV dec⁻¹。X射线衍射(XRD)、扫描电子显微镜(SEM)和拉曼研究证实了金属有机框架(MOF)向M - OOH的相变,M - OOH作为活性位点提高了OER活性。通过光谱和显微镜研究确定,双金属电极材料的效率和M - OOHv中的氧空位对电子功率密度有影响。制备的电极材料在50小时内还表现出良好的耐久性。因此,新开发的AlCu - MOF@M - OOHv - ER/CF纳米材料在水电解和其他储能设备方面具有更大的潜力。