Akbari Kenari Maede, Sabour Rouhaghdam Alireza, Barati Darband Ghasem
Department of Materials Engineering, Faculty of Engineering, Tarbiat Modares University, P.O. Box: 14115-143, Tehran, Iran.
Materials and Metallurgical Engineering Department, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad 91775-1111, Iran.
J Colloid Interface Sci. 2025 Jan 15;678(Pt B):828-841. doi: 10.1016/j.jcis.2024.09.058. Epub 2024 Sep 7.
The production of hydrogen gas as an environmentally friendly and emission-free fuel source, has emerged as the preeminent substitute for traditional fossil fuels. The demand for a viable and low-cost substitute of the anodic Oxygen Evolution Reaction (OER) in hydrogen gas production has led researchers to explore the Hydrazine Oxidation Reaction (HzOR), aiming to reduce overpotential. In this study, we present the synthesis of a NiSeP@NiCo/Cu electrocatalyst via electrodeposition method, offering precise control over parameter adjustments and an affordable price. The binder-free nanosheet structure of this electrocatalyst demonstrates improved performance in water electrolysis, resulting in potentials of -40 and -134 mV vs. Reversible Hydrogen Electrode (RHE) for Hydrogen Evolution Reaction (HER) and 0.041 and 0.194 V (vs. RHE) for HzOR (i = 10 and 100 mA.cm). The electrode has excellent features, including active electrochemical surface, synergistic effects among the elements, high stability, super-hydrophilicity and super-aerophobicity. The Bi-functional performance of electrode was tested in a two-electrode set for HER/HzOR, the cell voltage required to reach current densities of 10 and 100 mA.cm were determined as 0.071 and 0.298 V respectively. On the whole, this work presents the excellent capabilities of the synthesized electrode (NiSeP@NiCo/Cu) for hydrogen gas production.
作为一种环境友好且无排放的燃料来源,氢气的生产已成为传统化石燃料的首要替代品。在氢气生产中,对于一种可行且低成本的阳极析氧反应(OER)替代物的需求,促使研究人员探索肼氧化反应(HzOR),旨在降低过电位。在本研究中,我们通过电沉积法合成了一种NiSeP@NiCo/Cu电催化剂,该方法能精确控制参数调整且价格实惠。这种电催化剂的无粘结剂纳米片结构在水电解中表现出改进的性能,在析氢反应(HER)中相对于可逆氢电极(RHE)的电位为 -40和 -134 mV,在HzOR中(i = 10和100 mA.cm)相对于RHE的电位为0.041和0.194 V。该电极具有优异的特性,包括活性电化学表面、元素间的协同效应、高稳定性、超亲水性和超疏气性。在用于HER/HzOR的双电极装置中测试了电极的双功能性能,达到10和100 mA.cm电流密度所需的电池电压分别确定为0.071和0.298 V。总体而言,这项工作展示了合成电极(NiSeP@NiCo/Cu)在氢气生产方面的卓越能力。