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x Co y Alloys Electrodeposited on Stainless Steel AISI 316L for Hydrogen Evolution Reaction]]>

机译:<![cdata [ni和ni <重点类型=“斜体”> x co Y 合金 在不锈钢AISI 316L上电沉积,用于氢气进化反应]]]>

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摘要

Ni~( x )Co~( y )electrocatalysts for hydrogen evolution reaction (HER) were synthesized by electrodeposition on AISI 316L stainless steel (denoted as SS316L), as a scalable and economical alternative to be used in alkaline electrolyzers. For this, a previous treatment of the SS316L surface was carried out in order to optimize the deposition of different catalytic films containing Ni and Ni~( x )Co~( y )with different compositions (Ni~(89)Co~(11), Ni~(69)Co~(31), and Ni~(29)Co~(71)). The properties of the catalysts were established by scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and X-ray diffraction (XRD), and the catalytic activity for HER was evaluated by potentiodynamic experiments in 1?M KOH solutions. An increase in the current density toward the hydrogen evolution reaction was found with these Ni~( x )Co~( y )electrodes. For the Ni~(69)Co~(31)catalyst, current density values 112% higher than those recorded with deposited Ni from conventional Watts bath were obtained. The HER current shows a strong dependence on the content of Co on the alloy that is also evidenced in the electrochemical impedance experiments. The efficiency of electrocatalytic activity for HER was increased after an electrochemical aging treatment, indicating the presence of an activation process, for example with Ni~(89)Co~(11)electrodes, where higher current density for HER was observed. Graphical Abstract ?.
机译:Ni〜(X)CO〜(Y)通过电沉积在AISI 316L不锈钢(表示为SS316L)上的电沉积来合成氢进化反应(她)的电催化剂,作为在碱性电解器中使用的可扩展和经济的替代方案。为此,进行了先前的SS316L表面处理,以优化含有Ni和Ni〜(X)CO〜(Y)的不同催化膜的沉积,其具有不同的组合物(Ni〜(89)Co〜(11) ,Ni〜(69)CO〜(31),NI〜(29)CO〜(71))。通过扫描电子显微镜(SEM),能量分散X射线光谱(EDS)和X射线衍射(XRD)建立催化剂的性质,并且通过1Ω·米的电位实验评估她的催化活性KOH解决方案。用这些Ni〜(X)CO〜(Y)电极发现朝向氢化反应的电流密度的增加。对于Ni〜(69)CO〜(31)催化剂,获得了从常规瓦特浴中沉积Ni记录的电流密度值112%。她的电流显示出对在电化学阻抗实验中也证明的合金上的CO含量的强烈依赖性。在电化学老化处理后,升高的电化学性能的电催化活性的效率增加,表示活化过程的存在,例如用Ni〜(89)CO〜(11)电极,观察到较高电流密度。图形概要 ?。

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