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电沉积镍钼涂层作为绿色制氢的电催化材料。

Electrodeposited Ni-Mo coatings as electrocatalytic materials for green hydrogen production.

作者信息

Protsenko V S, Bobrova L S, Butyrina T E, Baskevich A S, Korniy S A, Danilov F I

机构信息

Ukrainian State University of Chemical Technology, Gagarin Ave., 8, Dnipro, 49005, Ukraine.

Karpenko Physico-Mechanical Institute of the NAS of Ukraine, Naukova St. 5, Lviv, 79060, Ukraine.

出版信息

Heliyon. 2023 Apr 5;9(4):e15230. doi: 10.1016/j.heliyon.2023.e15230. eCollection 2023 Apr.

Abstract

In this work, nanocrystalline nickel and nickel-molybdenum alloys were electrodeposited from electrolytes based on deep eutectic solvents. Eutectic mixtures of choline chloride with ethylene glycol (ethaline) and urea (reline) were used as typical representatives of deep eutectic solvents. The deposited Ni and Ni-Mo films were evaluated as potential electrocatalytic materials for green hydrogen production via electrolysis of alkaline aqueous solutions. The electrodeposited samples were characterized by XRD, SEM and EDX techniques, and the electrochemical behavior was evaluated by means of linear voltammetry and Tafel analysis. It was shown that the deposition of nickel (without molybdenum) from the electrolytes based on ethaline provides a higher electrocatalytic activity of the material with respect to the hydrogen evolution reaction than the material deposited from the reline-based electrolytes. The reline-based plating electrolytes contribute to a greater inclusion of molybdenum in the fabricated Ni-Mo alloys and therefore ensure increased electrocatalytic activity as compared with the ethaline-based electrolytes. The electrocatalytic behavior well correlates with the molybdenum content in the coatings. Ni and Ni-Mo electrodeposits produced from the deep eutectic solvent-mediated plating baths exhibit improved electrocatalytic performance and can be considered as promising catalytic materials for water electrolysis in green hydrogen energy.

摘要

在这项工作中,基于深共晶溶剂的电解质电沉积出了纳米晶镍和镍钼合金。氯化胆碱与乙二醇(乙aline)和尿素(reline)的共晶混合物被用作深共晶溶剂的典型代表。通过碱性水溶液电解制备绿色氢气时,对沉积的镍和镍钼薄膜作为潜在的电催化材料进行了评估。采用X射线衍射(XRD)、扫描电子显微镜(SEM)和能谱分析(EDX)技术对电沉积样品进行了表征,并通过线性伏安法和塔菲尔分析对其电化学行为进行了评估。结果表明,与从基于reline的电解质中沉积的材料相比,从基于乙aline的电解质中沉积镍(不含钼)时,材料对析氢反应具有更高的电催化活性。基于reline的电镀电解质有助于在制备的镍钼合金中更多地掺入钼,因此与基于乙aline的电解质相比,能确保更高的电催化活性。电催化行为与涂层中的钼含量密切相关。由深共晶溶剂介导的镀浴制备的镍和镍钼电沉积物表现出改善的电催化性能,可被视为绿色氢能中水电解的有前景的催化材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa52/10121461/9bd3001426aa/ga1.jpg

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