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High-activity electrodeposited NiW catalysts for hydrogen evolution in alkaline water electrolysis

机译:高活性电沉积NiW催化剂在碱性水电解中析氢

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摘要

NiW alloy catalysts were prepared on a Cu foil substrate by using a co-electrodeposition method for use in the hydrogen evolution (HER) in alkaline water electrolysis. The compositions of the alloy catalysts were controlled over a wide range by varying the molar ratio [W6+]/[Ni2+] in the electrolyte. At high W contents (similar to 41 at.%) in the deposited catalyst, the morphologies of the NiW alloys showed drastic changes compared with those of electrodeposited Ni, in particular a significant decrease in surface coverage and aggregates' sizes. All of NiW alloys deposited in a citrate-containing bath demonstrated an amorphous structure, regardless of W content. Electrochemical measurements employing repeated cyclic voltammetry (CV) showed enhanced HER activities for the NiW alloy catalysts compared with the pure Ni catalyst. The maximum HER activity was obtained with a W content of 41 at.%; the alloying effects, including morphological changes, and the high affinity for hydrogen absorption shown by this alloy's amorphous structure are dominant factors in the enhanced HER activity. The results presented herein provide advanced information of significant relationship between material properties and HER activity of NiW alloys. (C) 2015 Elsevier B.V. All rights reserved.
机译:NiW合金催化剂是通过在碱性水电解中用于析氢(HER)的共电沉积方法在Cu箔基材上制备的。通过改变电解质中的摩尔比[W6 +] / [Ni2 +],可以在很大范围内控制合金催化剂的组成。在沉积的催化剂中高W含量(约41 at。%)时,NiW合金的形貌与电沉积的Ni相比显示出剧烈的变化,特别是表面覆盖率和聚集体尺寸显着降低。无论含W量如何,所有沉积在含柠檬酸盐的镀液中的NiW合金都显示出非晶态结构。与纯Ni催化剂相比,采用重复循环伏安法(CV)进行的电化学测量显示,NiW合金催化剂的HER活性增强。以41原子%的W含量获得最大的HER活性。这种合金的非晶态结构所表现出的合金化作用(包括形态变化)和对氢吸收的高亲和力是增强HER活性的主要因素。本文提供的结果提供了NiW合金的材料性能与HER活性之间重要关系的高级信息。 (C)2015 Elsevier B.V.保留所有权利。

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