首页> 外文期刊>International journal of hydrogen energy >Application of a deep eutectic solvent to prepare nanocrystalline Ni and Ni/TiO_2 coatings as electrocatalysts for the hydrogen evolution reaction
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Application of a deep eutectic solvent to prepare nanocrystalline Ni and Ni/TiO_2 coatings as electrocatalysts for the hydrogen evolution reaction

机译:应用深共熔溶剂制备纳米晶Ni和Ni / TiO_2涂层作为析氢反应的电催化剂

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The paper reports the electrochemical deposition of nanocrystalline nickel and composite nickel-titania films as effective electrocatalysts for the hydrogen evolution reaction. To produce the composite Ni/TiO2 electrodeposits, a plating bath based on a deep eutectic solvent, a novel kind of ionic liquids, was used for the first time. The electrolyte contained ethaline (a eutectic mixture of choline chloride and ethylene glycol), 1 M NiCl2 center dot 6H(2)O and the addition of extra water (3, 6, 9 mol dm(-3)). Titania dispersed phase was introduced into the electrolyte as nanopowder Degussa P 25 (0-10 g dm(-3)). It was shown that the introduction of extra water to the plating bath allowed appreciably increasing the content of TiO2 phase in the coating (from ca. 2 to 10 wt%). The effects of electrolysis conditions on the TiO2 content in the coatings, surface morphology and microstructure were determined. The results of voltammetry measurements showed that the Ni and composite Ni/TiO2 coatings electrodeposited from the plating electrolyte based on a deep eutectic solvent exhibit improved electrocatalytic properties towards the hydrogen evolution reaction as compared with deposits obtained from commonly used aqueous electrolytes. The mechanism of the hydrogen evolution reaction on the Ni and composite Ni/TiO2 coatings is a combination of Volmer-Heyrovsky reactions. The introduction of TiO2 particles into the nickel matrix results in the acceleration of the hydrogen evolution reaction. An improved catalytic activity of Ni/TiO2 composites towards the hydrogen evolution reaction can be associated with the presence of titanium-containing redox couples on the surface. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该论文报道了纳米晶镍和复合镍-二氧化钛薄膜的电化学沉积,作为氢析出反应的有效电催化剂。为了生产复合Ni / TiO2电沉积物,首次使用了基于深共熔溶剂(一种新型的离子液体)的镀浴。电解液中含有乙胺(氯化胆碱和乙二醇的低共熔混合物),1 M NiCl2中心点6H(2)O和额外的水(3、6、9 mol dm(-3))。将二氧化钛分散相作为纳米粉Degussa P 25(0-10 g dm(-3))引入电解质中。结果表明,向镀浴中引入额外的水可明显增加涂层中TiO2相的含量(从约2到10 wt%)。确定了电解条件对涂层中TiO2含量,表面形貌和微观结构的影响。伏安法测量的结果表明,与从常用水性电解质中获得的沉积物相比,从基于深共熔溶剂的电镀电解质中电沉积的Ni涂层和Ni / TiO2复合涂层表现出对氢析出反应的改善的电催化性能。 Ni和复合Ni / TiO2涂层上氢析出反应的机理是Volmer-Heyrovsky反应的结合。将TiO2颗粒引入镍基体会加快氢释放反应的速度。 Ni / TiO 2复合材料对氢释放反应的改善的催化活性可以与表面上含钛的氧化还原对的存在有关。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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