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用于高效电化学水分解和超级电容的纳米尖晶石NiCo₂₋ₓFeₓO₄(0 ≤ x ≤ 1)固溶体的无溶剂合成

Solventless synthesis of nanospinel Ni Co FeO (0 ≤ ≤ 1) solid solutions for efficient electrochemical water splitting and supercapacitance.

作者信息

Malima Nyemaga Masanje, Khan Malik Dilshad, Choi Jonghyun, Gupta Ram K, Mashazi Philani, Nyokong Tebello, Revaprasadu Neerish

机构信息

Department of Chemistry, University of Zululand Private Bag X1001 KwaDlangezwa 3880 South Africa

Department of Chemistry, College of Natural and Mathematical Sciences, University of Dodoma P. O. Box 338 Dodoma Tanzania.

出版信息

RSC Adv. 2021 Sep 20;11(49):31002-31014. doi: 10.1039/d1ra04833c. eCollection 2021 Sep 14.

Abstract

The formation of solid solutions represents a robust strategy for modulating the electronic properties and improving the electrochemical performance of spinel ferrites. However, solid solutions have been predominantly prepared wet chemical routes, which involve the use of harmful and/or expensive chemicals. In the present study, a facile, inexpensive and environmentally benign solventless route is employed for the composition-controlled synthesis of nanoscopic Ni Co FeO (0 ≤ ≤ 1) solid solutions. The physicochemical characterization of the samples was performed by p-XRD, SEM, EDX, XPS, TEM, HRTEM and UV-Vis techniques. A systematic investigation was also carried out to elucidate the electrochemical performance of the prepared nanospinels towards energy generation and storage. Based on the results of CV, GCD, and stability tests, the NiCoFeO electrode showed the highest performance for the supercapacitor electrode exhibiting a specific capacitance of 237 F g, superior energy density of 10.3 W h kg and a high power density with a peak value of 4208 W kg, and 100% of its charge storage capacity was retained after 4000 cycles with 97% coulombic efficiency. For HER, the NiCoFeO and CoFeO electrodes showed low overpotentials of 168 and 169 mV, respectively, indicating better catalytic activity. For OER, the NiCoFeO electrode exhibited a lower overpotential of 320 mV at a current density of 10 mA cm, with a Tafel slope of 79 mV dec, demonstrating a fast and efficient process. These results indicated that nanospinel ferrite solid solutions could be employed as promising electrode materials for supercapacitor and water splitting applications.

摘要

固溶体的形成是一种调节尖晶石铁氧体电子性能和改善其电化学性能的有效策略。然而,固溶体主要是通过湿化学路线制备的,这涉及使用有害和/或昂贵的化学品。在本研究中,采用了一种简便、廉价且环境友好的无溶剂路线,用于组成可控地合成纳米级NiCoFeO(0≤≤1)固溶体。通过p-XRD、SEM、EDX、XPS、TEM、HRTEM和UV-Vis技术对样品进行了物理化学表征。还进行了系统研究,以阐明所制备的纳米尖晶石对能量产生和存储的电化学性能。基于CV、GCD和稳定性测试的结果,NiCoFeO电极在超级电容器电极方面表现出最高性能,比电容为237 F/g,能量密度高达10.3 W h/kg,峰值功率密度为4208 W/kg,在4000次循环后仍保留其100%的电荷存储容量,库仑效率为97%。对于析氢反应(HER),NiCoFeO和CoFeO电极分别显示出168和169 mV的低过电位,表明具有更好的催化活性。对于析氧反应(OER),NiCoFeO电极在电流密度为10 mA/cm²时表现出320 mV的较低过电位,塔菲尔斜率为79 mV/dec,证明了该过程快速且高效。这些结果表明,纳米尖晶石铁氧体固溶体可作为超级电容器和水分解应用中有前景的电极材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c4f/9041409/b6304815c578/d1ra04833c-f1.jpg

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