Beckman Institute and Division of Chemistry and Chemical Engineering, California Institute of Technology , M/C 139-74, Pasadena, California 91125, United States.
Chem Rev. 2016 Nov 23;116(22):14120-14136. doi: 10.1021/acs.chemrev.6b00398. Epub 2016 Oct 31.
Water oxidation is a key chemical transformation for the conversion of solar energy into chemical fuels. Our review focuses on recent work on robust earth-abundant heterogeneous catalysts for the oxygen-evolving reaction (OER). We point out that improvements in the performance of OER catalysts will depend critically on the success of work aimed at understanding reaction barriers based on atomic-level mechanisms. We highlight the challenge of obtaining acid-stable OER catalysts, with proposals for elements that could be employed to reach this goal. We suggest that future advances in solar fuels science will be accelerated by the development of new methods for materials synthesis and characterization, along with in-depth investigations of redox mechanisms at catalytic surfaces.
水氧化是将太阳能转化为化学燃料的关键化学反应。我们的综述重点关注了用于析氧反应(OER)的稳健、丰富的非均相催化剂的最新研究进展。我们指出,OER 催化剂性能的提高将取决于基于原子水平机制理解反应势垒工作的成功与否。我们强调了获得耐酸 OER 催化剂的挑战,并提出了一些可能实现这一目标的元素。我们认为,通过开发新材料合成和表征的新方法,以及对催化表面氧化还原机制的深入研究,太阳能燃料科学的未来进展将得到加速。