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均相分子催化剂和电催化剂的氧还原。

Oxygen Reduction by Homogeneous Molecular Catalysts and Electrocatalysts.

机构信息

Department of Chemistry , Yale University , New Haven , Connecticut 06520 , United States.

出版信息

Chem Rev. 2018 Mar 14;118(5):2340-2391. doi: 10.1021/acs.chemrev.7b00542. Epub 2018 Feb 6.

Abstract

The oxygen reduction reaction (ORR) is a key component of biological processes and energy technologies. This Review provides a comprehensive report of soluble molecular catalysts and electrocatalysts for the ORR. The precise synthetic control and relative ease of mechanistic study for homogeneous molecular catalysts, as compared to heterogeneous materials or surface-adsorbed species, enables a detailed understanding of the individual steps of ORR catalysis. Thus, the Review places particular emphasis on ORR mechanism and thermodynamics. First, the thermochemistry of oxygen reduction and the factors influencing ORR efficiency are described to contextualize the discussion of catalytic studies that follows. Reports of ORR catalysis are presented in terms of their mechanism, with separate sections for catalysis proceeding via initial outer- and inner-sphere electron transfer to O. The rates and selectivities (for production of HO vs HO) of these catalysts are provided, along with suggested methods for accurately comparing catalysts of different metals and ligand scaffolds that were examined under different experimental conditions.

摘要

氧还原反应(ORR)是生物过程和能源技术的关键组成部分。本综述全面介绍了用于 ORR 的可溶性分子催化剂和电催化剂。与多相材料或表面吸附物种相比,均相分子催化剂具有精确的合成控制和相对容易的机理研究,能够深入了解 ORR 催化的各个步骤。因此,本综述特别强调了 ORR 的机理和热力学。首先,描述了氧还原的热化学以及影响 ORR 效率的因素,以说明随后对催化研究的讨论。根据其机理,报告了 ORR 催化的情况,分别为通过初始外球和内球电子转移到 O 的催化。提供了这些催化剂的速率和选择性(用于生成 HO 与 HO),以及在不同实验条件下检查不同金属和配体支架的催化剂时,用于准确比较的建议方法。

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