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Expanding the frontiers of hydrogen evolution electrocatalysis-searching for the origins of electrocatalytic activity in the anomalies of the conventional model

机译:扩大氢气进化电催化的前沿寻找传统模型异常中电催化活性的起源

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After decades of research, understanding the origins of electrocatalytic activity remains a fundamental scientific challenge. While most of the effort s were directed towards comprehending what dictates bond -ing of intermediates, attempts to go beyond the paradigm of optimal adsorption energies are rare. In this work, by analysis of the conventional hydrogen electrocatalysis model, and by comparative analysis of Pt and Pd, we propose what can be an important contributor to electrocatalytic activity, besides adsorption energies of intermediates. Discussion is initiated about the possible link between bulk electronic struc-ture of a metal and charge transfer coefficient (including symmetry factor of activation barrier) as a key contributor to electrode reaction rate.
机译:经过几十年的研究,理解电催化活性的起源仍然是一个基本的科学挑战。虽然大多数研究工作都是为了理解中间产物成键的原因,但很少有人试图超越最佳吸附能的范式。在这项工作中,通过对传统氢电催化模型的分析,以及对Pt和Pd的对比分析,我们提出了除了中间产物的吸附能之外,对电催化活性的重要贡献因素。讨论了金属的体电子结构与电荷转移系数(包括活化势垒的对称因子)之间的可能联系,电荷转移系数是影响电极反应速率的关键因素。

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