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析氢反应:从材料到界面描述符

The hydrogen evolution reaction: from material to interfacial descriptors.

作者信息

Dubouis Nicolas, Grimaud Alexis

机构信息

Chimie du Solide et de l'Energie , Collège de France , UMR 8260 , 75231 Paris Cedex 05 , France.

Réseau sur le Stockage Electrochimique de l'Energie (RS2E) , CNRS FR3459 , 33 rue Saint Leu , 80039 Amiens Cedex , France.

出版信息

Chem Sci. 2019 Sep 10;10(40):9165-9181. doi: 10.1039/c9sc03831k. eCollection 2019 Oct 28.

Abstract

The production of sustainable hydrogen with water electrolyzers is envisaged as one of the most promising ways to match the continuously growing demand for renewable electricity storage. While so far regarded as fast when compared to the oxygen evolution reaction (OER), the hydrogen evolution reaction (HER) regained interest in the last few years owing to its poor kinetics in alkaline electrolytes. Indeed, this slow kinetics not only may hinder the foreseen development of the anionic exchange membrane water electrolyzer (AEMWE), but also raises fundamental questions regarding the parameters governing the reaction. In this perspective, we first briefly review the fundamentals of the HER, emphasizing how studies performed on model electrodes allowed for achieving a good understanding of its mechanism under acidic conditions. Then, we discuss how the use of physical descriptors capturing the sole properties of the catalyst is not sufficient to describe the HER kinetics under alkaline conditions, thus forcing the catalysis community to adopt a more complex picture taking into account the electrolyte structure at the electrochemical interface. This work also outlines new techniques, such as spectroscopies, molecular simulations, or chemical approaches that could be employed to tackle these new fundamental challenges, and potentially guide the future design of practical and cheap catalysts while also being useful to a wider community dealing with electrochemical energy storage devices using aqueous electrolytes.

摘要

利用水电解槽生产可持续氢气被视为满足对可再生电力存储不断增长需求的最有前景的方法之一。尽管与析氧反应(OER)相比,析氢反应(HER)迄今一直被认为速度较快,但由于其在碱性电解质中的动力学较差,在过去几年中重新引起了人们的关注。事实上,这种缓慢的动力学不仅可能阻碍阴离子交换膜水电解槽(AEMWE)的预期发展,还引发了有关控制该反应参数的基本问题。从这个角度来看,我们首先简要回顾HER的基本原理,强调对模型电极进行的研究如何有助于深入理解其在酸性条件下的反应机理。然后,我们讨论了仅捕捉催化剂单一性质的物理描述符不足以描述碱性条件下的HER动力学,从而迫使催化领域采用更复杂的图景,将电化学界面处的电解质结构考虑在内。这项工作还概述了一些新技术,如光谱学、分子模拟或化学方法,这些技术可用于应对这些新的基本挑战,并有可能指导未来实用且廉价催化剂的设计,同时对更广泛的使用水性电解质的电化学储能装置领域也有用处。

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