Bediako D Kwabena, Ullman Andrew M, Nocera Daniel G
Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, MA, USA.
Top Curr Chem. 2016;371:173-213. doi: 10.1007/128_2015_649.
The contemporary demand to generate fuels from solar energy has stimulated intense effort to develop water splitting catalysts that can be coupled to light-absorbing materials. Cobalt oxido catalyst (Co-OECs) films deposited from buffered Co(II) solutions have emerged as arguably the most studied class of heterogeneous oxygen evolution catalysts. The interest in these materials stems from their formation by self-assembly, their self-healing properties, and their promising catalytic activity under a variety of conditions. The structure and function of these catalysts are reviewed here together with studies of molecular Co-O cluster compounds, which have proven invaluable in elucidating the chemistry of the Co-OECs.
当代从太阳能生产燃料的需求激发了人们为开发可与光吸收材料耦合的水分解催化剂而付出的巨大努力。从缓冲的Co(II)溶液中沉积的氧化钴催化剂(Co-OECs)薄膜已成为研究最多的一类非均相析氧催化剂。对这些材料的兴趣源于它们通过自组装形成、具有自愈特性以及在各种条件下都有良好的催化活性。本文综述了这些催化剂的结构和功能,以及分子Co-O簇化合物的研究,这些研究在阐明Co-OECs的化学性质方面已被证明具有极高价值。