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Two-Dimensional Earth-Abundant Transition Metal Oxides Nanomaterials: Synthesis and Application in Electrochemical Oxygen Evolution Reaction

机译:二维地球丰富过渡金属氧化物纳米材料:在电化学氧气进化反应中的合成与应用

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摘要

Development of a universal synthetic strategy for two-dimensional (2D) Earth-abundant transition metal oxides nanomaterials is highly vital toward numerous electrochemical applications. Herein, a facile and general synthesis of highly ordered two-dimensional metal oxides nanomaterials includes Co3O4, NiO, CuO, and Fe3O4 nanosheets as an electrocatalyst for oxygen evolution reaction (OER) is demonstrated. Among the synthesized 2D transition metal oxides, the Co3O4 nanosheet exhibits smallest overpotential (eta) of similar to 384.0 mV at a current density of 10.0 mA cm(-2) and Tafel slope of similar to 52.0 mV dec(-1), highest mass activity of similar to 112.3 A g(-1) at the overpotential of similar to 384.0 mV, and high turn over frequency (TOF) of 0.099 s(-1), which is relatively favorable with state-of-the-art RuO2 catalyst. The present synthetic approach may unlock a brand new pathway to prepare shape-controlled Earth-abundant transition metal oxides nanomaterials for electrocatalytic OER.
机译:用于二维(2D)土堆积金属氧化物纳米材料的普遍合成策略的开发对于许多电化学应用,高度至关重要。在此,对高度有序的二维金属氧化物纳米材料的容纳和一般合成包括CO 3 O 4,NiO,CuO和Fe3O4纳米片作为氧气荧光反应(oer)的电催化剂。在合成的2D过渡金属氧化物中,CO3O4纳米液表现出与384.0mV相似的最小过电位(ETA),其电流密度为10.0 mA cm(-2)和类似于52.0 mV DEC(-1)的TAFEL斜率,最高质量类似于112.3a g(-1)的活性,在类似于384.0 mV,高匝数(tof)的0.099 s(-1),这与最先进的Ruo2催化剂相对良好。本发明的合成方法可以解锁全新的途径,制备用于电催化作用的形状控制的地层过渡金属氧化物纳米材料。

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