Chemical Engineering Department, Amirkabir University of Technology (Tehran Polytechnic), Mahshahr Campus, Mahshahr, Iran.
Surface Reaction and Advanced Energy Materials Laboratory, Chemical Engineering Department, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
Sci Rep. 2023 May 24;13(1):8359. doi: 10.1038/s41598-023-35613-7.
One of the present great challenges is finding nonprecious materials characterized by efficient electrocatalytic behavior in order to substitute the expensive platinum-based materials for the purpose of hydrogen evolution reactions (HERs). In this study, ZIF-67 and ZIF-67 were used as precursors in order to fabricate metallic-doped N-enriched carbon successfully through a simple process of pyrolysis for applying the hydrogen evolution reaction. In addition, nickel was added to these structures in the course of the synthesis procedure. While under high-temperature treatment, Nickel doped ZIF-67 was transformed into metallic NiCo doped N enriched carbon (NiCo/NC), under high-temperature treatments, Ni-doped ZIF-8 changed into metallic NiZn doped N enriched carbon (NiZn/NC). By combining metallic precursors, the following five structures were synthesized: NiCo/NC, Co/NC, NiZn/NC, NiCoZn/NC, as well as CoZn/NC. It is noteworthy that the produced Co/NC shows optimum hydrogen evolution reaction activity along with superior overpotential of 97 mV and the minimum Tafel slope of 60 mV/dec at 10 mA cm. In addition, the superb behavior of hydrogen evolution reaction can be attributable to the numerous active sites, the superior electrical conductivity of carbon, and the firm structure. As a result, the present paper suggests a novel strategy in order to produce nonprecious materials characterized by superb HER efficiency for future scholars.
目前的一大挑战是寻找具有高效电催化性能的非贵金属材料,以替代昂贵的基于铂的材料,用于析氢反应(HERs)。在这项研究中,ZIF-67 和 ZIF-67 被用作前驱体,通过简单的热解过程成功制备了金属掺杂的富氮碳,用于析氢反应。此外,在合成过程中向这些结构中添加了镍。在高温处理过程中,Ni 掺杂 ZIF-67 转化为金属 NiCo 掺杂富氮碳(NiCo/NC),而 Ni 掺杂 ZIF-8 在高温处理下转化为金属 NiZn 掺杂富氮碳(NiZn/NC)。通过结合金属前体,合成了以下五种结构:NiCo/NC、Co/NC、NiZn/NC、NiCoZn/NC 和 CoZn/NC。值得注意的是,所制备的 Co/NC 表现出最佳的析氢反应活性,具有 97 mV 的超优过电势和 60 mV/dec 的最小 Tafel 斜率在 10 mA cm 下。此外,析氢反应的优异性能可归因于大量的活性位点、碳的优异导电性和稳定的结构。因此,本文为未来的学者提出了一种生产具有优异 HER 效率的非贵金属材料的新策略。