The Effect of Electrolytes on the Kinetics of the Hydrogen Evolution Reaction

Hydrogen Pub Date : 2023-10-13 DOI:10.3390/hydrogen4040049
Goitom K. Gebremariam, Aleksandar Z. Jovanović, Igor A. Pašti
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Abstract

Amid global energy challenges, the hydrogen evolution reaction (HER) is gaining traction for green hydrogen production. While catalyst research is ongoing, recognizing electrolyte effects remains crucial for sustainable hydrogen production via renewable-powered water electrolysis. This review delves into the intricate effects of electrolytes on the kinetics of the HER. It examines key factors including the pH, cations, anions, impurities, and electrolyte concentration. This review discusses the notion that the electrolyte pH alters catalyst–electrolyte interactions and proton concentrations, thereby influencing factors such as the hydrogen binding energy, water adsorption, and overall reaction kinetics. Moreover, this review provides a briefing on the notion that electrolyte cations such as Li+ can impact the HER positively or negatively, offering opportunities for improvement based on the metal substrate. Interestingly, there is a potential that the HER can be tuned using Li+ ions to modify the M–H bond energy, demonstrating a flexibility beyond the pH levels and counter-ions. The varied adsorption energies of metal cations on metal electrodes are also found to influence the HER kinetics. The effects of electrolyte anions and impurities are also discussed, emphasizing both the positive and negative impacts on HER kinetics. Moreover, it is pointed out that the electrolyte-engineering approach enhances the HER kinetics without permanent catalyst surface modifications. This review underscores the importance of the electrolyte composition, highlighting both the challenges and potential solutions in advancing HER research for sustainable energy production.
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电解质对析氢反应动力学的影响
在全球能源挑战的背景下,析氢反应(HER)正在成为绿色制氢的动力。虽然催化剂的研究仍在进行中,但认识到电解质的影响对于通过可再生能源水电解可持续制氢仍然至关重要。这篇综述深入研究了电解质对HER动力学的复杂影响。它检查的关键因素包括pH值,阳离子,阴离子,杂质和电解质浓度。本文讨论了电解质pH改变催化剂-电解质相互作用和质子浓度的概念,从而影响氢结合能、水吸附和整体反应动力学等因素。此外,本文还简要介绍了电解质阳离子(如Li+)对HER的正面或负面影响,为基于金属衬底的改进提供了机会。有趣的是,有可能利用Li+离子来调节HER来改变M-H键的能量,显示出超出pH值和反离子水平的灵活性。不同的金属阳离子在金属电极上的吸附能也会影响HER动力学。还讨论了电解质阴离子和杂质的影响,强调了对HER动力学的积极和消极影响。此外,还指出,电解质工程方法可以在不进行永久催化剂表面修饰的情况下提高HER动力学。这篇综述强调了电解质组成的重要性,强调了推进HER研究以实现可持续能源生产的挑战和潜在解决方案。
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