School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules, Shanghai Jiao Tong University, 800 Dongchuan Road, 200240, Shanghai, P.R. China.
Chemistry. 2023 Jul 6;29(38):e202300879. doi: 10.1002/chem.202300879. Epub 2023 May 19.
Inspired by carbon monoxide dehydrogenase (CODH), mimicking its inner and outer spheres is a promising strategy in CO reduction catalyst design. However, artificial CODH-like catalysts are generally limited to the inner sphere effect and only applicable in organic solvents or for electrocatalysis. Herein, an aqueous CODH mimic with both inner and outer spheres for photocatalysis is reported. In this polymeric unimolecular catalyst, the inner sphere is composed of cobalt porphyrin with four appended amido groups and the outer sphere consists of four poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA) arms. Upon visible light irradiation (λ >420 nm), the as-prepared catalyst exhibits a turnover number (TON ) of 1731.2 in the reduction of CO into CO, which is comparable to most reported molecular catalysts in aqueous solution. The mechanism studies indicate that, in this water-dispersible and structurally well-defined CODH mimic, the cobalt porphyrin core serves as the catalysis center and the amido groups function as hydrogen-bonding pillars helping to stabilize the CO adduct intermediate, whereas the PDMAEMA shell renders both water solubility and a CO reservoir through reversibly capturing of CO . The present work has clarified the significance of coordination sphere effects for improving the aqueous photocatalytic CO reduction performance of CODH mimics.
受一氧化碳脱氢酶 (CODH) 的启发,模拟其内外球是设计 CO 还原催化剂的一种很有前途的策略。然而,人工 CODH 类似催化剂通常仅限于内球效应,仅适用于有机溶剂或电催化。本文报道了一种用于光催化的同时具有内外球的水相 CODH 模拟物。在这个聚合的单分子催化剂中,内球由四个附加的酰胺基的钴卟啉组成,外球由四个聚(2-(二甲氨基)乙基甲基丙烯酸酯) (PDMAEMA) 臂组成。在可见光照射下(λ>420nm),所制备的催化剂在将 CO 还原为 CO 的反应中表现出 1731.2 的周转数 (TON),这可与大多数在水溶液中报道的分子催化剂相媲美。机理研究表明,在这个水分散的、结构明确的 CODH 模拟物中,钴卟啉核作为催化中心,酰胺基作为氢键桥帮助稳定 CO 加合物中间体,而 PDMAEMA 壳则通过可逆捕获 CO 赋予水溶性和 CO 储库。本工作阐明了配位球效应在提高 CODH 模拟物的水相光催化 CO 还原性能方面的重要性。