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Water Oxidation Mechanisms of Metal Oxide Catalysts by Vibrational Spectroscopy of Transient Intermediates
Annual Review of Physical Chemistry ( IF 14.7 ) Pub Date : 2017-05-02 00:00:00 , DOI: 10.1146/annurev-physchem-052516-050655
Miao Zhang 1 , Heinz Frei 2
Affiliation  

Water oxidation is an essential reaction of an artificial photosystem for solar fuel generation because it provides electrons needed to reduce carbon dioxide or protons to a fuel. Earth-abundant metal oxides are among the most attractive catalytic materials for this reaction because of their robustness and scalability, but their efficiency poses a challenge. Knowledge of catalytic surface intermediates gained by vibrational spectroscopy under reaction conditions plays a key role in uncovering kinetic bottlenecks and provides a basis for catalyst design improvements. Recent dynamic infrared and Raman studies reveal the molecular identity of transient surface intermediates of water oxidation on metal oxides. Combined with ultrafast infrared observations of how charges are delivered to active sites of the metal oxide catalyst and drive the multielectron reaction, spectroscopic advances are poised to play a key role in accelerating progress toward improved catalysts for artificial photosynthesis.

中文翻译:


瞬态中间体的振动光谱分析金属氧化物催化剂的水氧化机理

水氧化是人造光系统用于太阳能燃料生产的重要反应,因为水氧化提供了将二氧化碳或质子还原为燃料所需的电子。富含地球的金属氧化物由于其坚固性和可扩展性而成为该反应最吸引人的催化材料之一,但其效率带来了挑战。在反应条件下通过振动光谱学获得的催化表面中间体的知识在揭示动力学瓶颈方面起着关键作用,并为改进催化剂设计提供了基础。最近的动态红外和拉曼研究揭示了金属氧化物上水氧化的瞬时表面中间体的分子身份。

更新日期:2017-05-02
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