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Facile synthesis of molybdenum-based layered double hydroxide nanorods for boosting water oxidation reaction

机译:基于钼的层状双氢氧化物纳米棒的容纳合成促进水氧化反应

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摘要

Exploiting environmentally friendly and robust oxygen evolution reaction (OER) electrodes is still a great difficulty to promote the water oxidation for electrocatalytic water splitting. In the work, molybdenum-doped nickel copper hydrotalcite (NiCuMox LDH) nanoarrays have been firstly in situ grown on nickel foam (NF) via a typical hydrothermal process. When NiCuMo0.2 LDH/NF was used as a OER electrocatalyst, it displays superior electrocatalytic performance with the need of small overpotentials of only 290 mV to drive 40 mA cm(-2) and a low Tafel slope of 39.8mVdec(-1), which are almost one of the best water oxidationactivities reported so far. The enhanced electrocatalytic performance is attributed to unique urchin-like structure, more exposure to active sites and enhanced charge transfer rate owing to the synergistic effect of Mo doping and NiCu LDH. The work put forward a new method for the development of efficient water oxidation electrocatalysts, which will fill the gap for the exploitation of trimetal LDH-based electrodes in large-scale water splitting applications in the future. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:利用环保和强大的氧气进化反应(OER)电极仍然很难促进用于电催化水分裂的水氧化。在工作中,首先通过典型的水热法在镍泡沫(NF)上原位生长钼掺杂镍铜水滑石(Nicumox LDH)纳米阵列。当Nicumo0.2 LDH / NF用作oer电催化剂时,它显示出卓越的电催化性能,需要小型过电量,仅为290 mV驱动40 mA cm(-2)和39.8mVdec(-1)的低Tafel斜率这几乎是迄今为止报告的最佳水氧化过程之一。增强的电催化性能归因于独特的核素状结构,由于Mo掺杂和Nicu LDH的协同效应,由于Mo掺杂和NiCU LDH的协同效应,对活性部位有更多的暴露,并且增强的电荷转移率。该工作提出了一种新的促进高效水氧化电催化剂的方法,这将填补了未来大规模水分裂应用中三兆LDH基电极的差距。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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