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一种用于量化控制析氧反应的局部pH梯度的简单模型。

A Straightforward Model for Quantifying Local pH Gradients Governing the Oxygen Evolution Reaction.

作者信息

Veroneau Samuel S, Hartnett Alaina C, Ryu Jaeyune, Hong Hyukhun, Costentin Cyrille, Nocera Daniel G

机构信息

Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, Massachusetts 02138, United States.

CNRS, DCM, Université Grenoble Alpes, 38000 Grenoble, France.

出版信息

J Am Chem Soc. 2024 Oct 23;146(42):28925-28931. doi: 10.1021/jacs.4c09521. Epub 2024 Oct 11.

Abstract

The production and consumption of protons by an electrocatalyst will, under certain conditions, generate localized microenvironments with properties distinct from those of the bulk solution. These local properties are particularly impactful for reactions involving proton-coupled electron transfer, where the generation of locally basic or acidic environments may significantly influence the energy efficiency and reaction selectivity of the electrocatalyst. Whereas local pH environments have been observed and characterized in reductive half-reactions, including the CO reduction and hydrogen evolution reactions, the incompatibility of conventional techniques and materials has limited studies in oxidative half-reactions, including the oxygen evolution reaction (OER), which provides the reducing equivalents for solar-to-fuels electrolysis. With the straightforward parameters bulk pH, buffer composition and p, and mass transport, we develop a model for describing local pH as a function of current density regardless of the microscopic details of the mechanism. Using an acid-stable PbO OER catalyst, we observe the formation and dissipation of pH gradients during the OER and validate the model with voltammetric and potentiometric studies. The model predicts how local acidic environments can develop over a narrow OER current density window, thus providing further motivation for the development of OER catalysts that are stable to acid, even when operating in basic aqueous conditions. More generally, the model is not restricted to the OER and is useful for determining the onset of local pH gradients for other electrocatalytic reactions that involve the consumption or generation of protons in energy conversion reactions.

摘要

在某些条件下,电催化剂产生和消耗质子会生成局部微环境,其性质与本体溶液不同。这些局部性质对于涉及质子耦合电子转移的反应尤为重要,因为局部碱性或酸性环境的产生可能会显著影响电催化剂的能量效率和反应选择性。虽然在包括CO还原和析氢反应在内的还原半反应中已经观察到并表征了局部pH环境,但传统技术和材料的不相容性限制了对包括析氧反应(OER)在内的氧化半反应的研究,而析氧反应为太阳能到燃料的电解提供还原当量。利用简单的参数——本体pH、缓冲液组成和p以及传质,我们开发了一个模型,用于描述局部pH作为电流密度的函数,而无需考虑机制的微观细节。使用一种耐酸的PbO析氧催化剂,我们观察到析氧反应过程中pH梯度的形成和消散,并通过伏安法和电位法研究验证了该模型。该模型预测了局部酸性环境如何在狭窄的析氧电流密度窗口内发展,从而为开发即使在碱性水溶液条件下运行时也对酸稳定的析氧催化剂提供了进一步的动力。更一般地说,该模型不限于析氧反应,对于确定其他涉及能量转换反应中质子消耗或产生的电催化反应的局部pH梯度的起始情况也很有用。

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