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首页> 外文期刊>Journal of Taibah University for Science >Fabrication of Ni–MOF-derived composite material for efficient electrocatalytic OER
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Fabrication of Ni–MOF-derived composite material for efficient electrocatalytic OER

机译:用于高效电催化作用的Ni-Mof衍生的复合材料的制备

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The poverty-stricken population cannot withstand the shocks of global warming and can hardly pay the soaring expenditure of fossil fuels whose reservoirs are already approaching the threshold limit. These adventures guided the researchers towards water oxidation as a source of energy. In this study, a metal-organic framework (MOF)-based material was fabricated and catalyzed the lethargic oxygen evolution reaction (OER). The synthesized material is characterized with different analytical techniques to confirm structural, morphological and textural properties. Its huge surface area (87?m 2 /g) rendered it a promising material to carry the OER. It exhibited shallow onset potential that is, 1.40?V vs. RHE and displayed an exceptionally low overpotential of 1.42?V vs. RHE to reach the benchmark current density (10?mA/cm 2 ) with remarkably small Tafel slope that is, 34?mV/dec. It surpassed the state of the art electrocatalyst for OER, that is, IrO 2 and RuO 2 in efficiency as well as in stability.
机译:贫困人口无法承受全球变暖的冲击,几乎无法支付化石燃料的飙升支出,其储存器已经接近阈值限制。这些冒险将研究人员推向水氧化作为能量来源。在该研究中,制造了金属 - 有机框架(MOF)的基质,并催化了嗜酸性氧气进化反应(oer)。合成材料具有不同的分析技术,以确认结构,形态和纹理性质。它的巨大的表面积(87×m 2 / g)使其成为携带伊尔的有希望的材料。它表现出浅的发病潜力,即1.40?V与RHE显示出一个特别低的过电位为1.42?V与RHE,以达到基准电流密度(10?MA / CM 2),具有显着的小TAFEL斜率,即34 ?MV / DEC。它超越了伊尔陶器的通用电催化剂的状态,即IRO 2和Ruo 2的效率以及稳定性。

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