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析氯反应和析氧反应的竞争设计标准:避免吸附态次氯酸根以提高氯选择性。

Design criteria for the competing chlorine and oxygen evolution reactions: avoid the OCl adsorbate to enhance chlorine selectivity.

作者信息

Exner Kai S

机构信息

Sofia University, Faculty of Chemistry and Pharmacy, Department of Physical Chemistry, 1 James Bourchier Avenue, Sofia 1164, Bulgaria.

出版信息

Phys Chem Chem Phys. 2020 Oct 15;22(39):22451-22458. doi: 10.1039/d0cp03667f.

Abstract

The formation of gaseous chlorine within chlor-alkali electrolysis is accompanied by a selectivity problem, as the evolution of gaseous oxygen constitutes a detrimental side reaction in the same potential range. As such, the development of electrode materials with high selectivity toward the chlorine evolution reaction is of particular importance to the chemical industry. Insight into the elementary reaction steps is ultimately required to comprehend chlorine selectivity on a molecular level. Commonly, linear scaling relationships are analyzed by the construction of a volcano plot, using the binding energy of oxygen, ΔEO, as a descriptor in the analysis. The present article reinvestigates the selectivity problem of the competing chlorine and oxygen evolution reactions by applying a different strategy compared to previous literature studies. On the one hand, a unifying material-screening framework that, besides binding energies, also includes the applied overpotential, kinetics, and the electrochemical-step symmetry index is used to comprehend trends in this selectivity issue for transition-metal oxide-based electrodes. On the other hand, the free-energy difference between the adsorbed oxygen and adsorbed hydroxide, ΔG2, rather than ΔEO is used as a descriptor in the analysis. It is demonstrated that the formation of the OCl adsorbate within the chlorine evolution reaction inherently limits chlorine selectivity, whereas, in the optimum case, the formation of the Cl intermediate can result in significantly higher chlorine selectivity. This finding is used to derive the design criteria for highly selective chlorine evolution electrocatalysts, which can be used in the future to search for potential electrode compositions by material-screening techniques.

摘要

氯碱电解过程中气态氯的形成伴随着一个选择性问题,因为气态氧的析出在相同电位范围内构成了有害的副反应。因此,开发对析氯反应具有高选择性的电极材料对化学工业尤为重要。最终需要深入了解基本反应步骤,以便在分子水平上理解氯的选择性。通常,通过构建火山图来分析线性标度关系,在分析中使用氧的结合能ΔEO作为描述符。与以往的文献研究相比,本文采用不同的策略重新研究了竞争性析氯和析氧反应的选择性问题。一方面,使用一个统一的材料筛选框架,除了结合能外,还包括施加的过电位、动力学和电化学步骤对称指数,以理解基于过渡金属氧化物的电极在该选择性问题上的趋势。另一方面,在分析中使用吸附氧和吸附氢氧化物之间的自由能差ΔG2,而不是ΔEO作为描述符。结果表明,析氯反应中OCl吸附物的形成本质上限制了氯的选择性,而在最佳情况下,Cl中间体的形成可导致显著更高的氯选择性。这一发现被用于推导高选择性析氯电催化剂的设计标准,未来可用于通过材料筛选技术寻找潜在的电极组成。

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