Reduction of the Electrode Overpotential of the Oxygen Evolution Reaction by Electrode Surface Modification

IF 2.3 Q3 ELECTROCHEMISTRY
Cian-Tong Lu, Yen-Wen Chiu, Meiran Li, K. Hsueh, J. Hung
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引用次数: 13

Abstract

Metal–air batteries exhibit high potential for grid-scale energy storage because of their high theoretical energy density, their abundance in the earth’s crust, and their low cost. In these batteries, the oxygen evolution reaction (OER) occurs on the air electrode during charging. This study proposes a method for improving the OER electrode performance. The method involves sequentially depositing a Ni underlayer, Sn whiskers, and a Ni protection layer on the metal mesh. Small and uniform gas bubbles form on the Ni/Sn/Ni mesh, leading to low overpotential and a decrease in the overall resistance of the OER electrode. The results of a simulated life cycle test indicate that the Ni/Sn/Ni mesh has a life cycle longer than 1,300 cycles when it is used as the OER electrode in 6 M KOH.
电极表面修饰降低析氧反应电极过电位
金属-空气电池由于其高理论能量密度、在地壳中的丰度和低成本,在电网规模的储能方面表现出很高的潜力。在这些电池中,在充电期间在空气电极上发生析氧反应(OER)。本研究提出了一种提高OER电极性能的方法。该方法包括在金属网上依次沉积Ni底层、Sn晶须和Ni保护层。在Ni/Sn/Ni网格上形成小而均匀的气泡,导致低过电位和OER电极的总电阻降低。模拟寿命试验的结果表明,在6 M KOH。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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