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镍钴包覆的石墨烯基3D打印电极的析氢反应性能

Hydrogen Evolution Reaction Performance of Ni-Co-Coated Graphene-Based 3D Printed Electrodes.

作者信息

Hüner Bulut, Demir Nesrin, Kaya Mehmet Fatih

机构信息

Erciyes University, Engineering Faculty, Energy Systems Engineering Department, Heat Engineering Division, 38039Kayseri, Turkey.

Erciyes University, Graduate School of Natural and Applied Sciences, Energy Systems Engineering Department, 38039Kayseri, Turkey.

出版信息

ACS Omega. 2023 Feb 2;8(6):5958-5974. doi: 10.1021/acsomega.2c07856. eCollection 2023 Feb 14.

Abstract

Additive manufacturing has been a very promising topic in recent years for research and development studies and industrial applications. Its electrochemical applications are very popular due to the cost-effective rapid production from the environmentally friendly method. In this study, three-dimensional (3D) printed electrodes are prepared by Ni and Co coatings in different molar ratios. Different Ni/Co molar ratios (:) of the Ni/Co/: alloys are prepared as 1:1, 1:4, and 4:1 and they are named Ni/Co/1:1, Ni/Co/4:1, and Ni/Co/1:4, respectively. According to the results, when the 3D electrode samples are coated with Ni and Co at different molar ratios, the kinetic performance of the NiCo-coated 3D electrode samples for hydrogen evolution reaction is enhanced compared to that of the uncoated 3D electrode sample. The results indicate that the Ni/Co/1:4-coated 3D electrode has the highest kinetic activity for hydrogen evolution reactions (HERs). The calculated Tafel's slope and overpotential value (η) for HER are determined as 164.65 mV/dec and 101.92 mV, respectively. Moreover, the Ni/Co/1:4-coated 3D electrode has an 81.2% higher current density than the other electrode. It is observed that the 3D printing of the electrochemical electrodes is very promising when they are coated with Ni-Co metals in different ratios. This study provides a new perspective on the use of 3D printed electrodes for high-performance water electrolysis.

摘要

近年来,增材制造一直是研发研究和工业应用中一个非常有前景的课题。由于其采用环保方法进行具有成本效益的快速生产,其电化学应用非常受欢迎。在本研究中,通过不同摩尔比的镍和钴涂层制备三维(3D)打印电极。制备了镍/钴合金不同镍/钴摩尔比(:)的1:1、1:4和4:1,并分别命名为Ni/Co/1:1、Ni/Co/4:1和Ni/Co/1:4。结果表明,当3D电极样品用不同摩尔比的镍和钴涂层时,与未涂层的3D电极样品相比,镍钴涂层的3D电极样品在析氢反应中的动力学性能得到增强。结果表明,Ni/Co/1:4涂层的3D电极在析氢反应(HERs)中具有最高的动力学活性。计算得出的HER的塔菲尔斜率和过电位值(η)分别为164.65 mV/dec和101.92 mV。此外,Ni/Co/1:4涂层的3D电极的电流密度比其他电极高81.2%。可以观察到,当电化学电极用不同比例的镍钴金属涂层时,3D打印非常有前景。本研究为高性能水电解中3D打印电极的使用提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee21/9933213/1259bff3b2cb/ao2c07856_0002.jpg

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