Riente Paola, Fianchini Mauro, Llanes Patricia, Pericàs Miquel A, Noël Timothy
Department of Chemical Engineering and Chemistry, Micro Flow Chemistry and Synthetic Methodology, Eindhoven University of Technology, Eindhoven, The Netherlands.
Institute of Chemical Research of Catalonia (ICIQ), The Barcelona Institute of Science and Technology (BIST), E-43007, Tarragona, Spain.
Nat Commun. 2021 Jan 27;12(1):625. doi: 10.1038/s41467-020-20882-x.
The importance of discovering the true catalytically active species involved in photocatalytic systems allows for a better and more general understanding of photocatalytic processes, which eventually may help to improve their efficiency. BiO has been used as a heterogeneous photocatalyst and is able to catalyze several synthetically important visible-light-driven organic transformations. However, insight into the operative catalyst involved in the photocatalytic process is hitherto missing. Herein, we show through a combination of theoretical and experimental studies that the perceived heterogeneous photocatalysis with BiO in the presence of alkyl bromides involves a homogeneous BiBr species, which is the true photocatalyst operative in the reaction. Hence, BiO can be regarded as a precatalyst which is slowly converted in an active homogeneous photocatalyst. This work can also be of importance to mechanistic studies involving other semiconductor-based photocatalytic processes.
发现光催化体系中真正具有催化活性的物种非常重要,这有助于更好、更全面地理解光催化过程,最终可能有助于提高其效率。BiO已被用作多相光催化剂,能够催化几种具有重要合成意义的可见光驱动的有机转化反应。然而,目前对于光催化过程中起作用的催化剂仍缺乏深入了解。在此,我们通过理论和实验研究相结合表明,在烷基溴存在下,BiO所表现出的多相光催化涉及一种均相BiBr物种,它是反应中真正起作用的光催化剂。因此,BiO可被视为一种前催化剂,它会缓慢转化为活性均相光催化剂。这项工作对于涉及其他基于半导体的光催化过程的机理研究也可能具有重要意义。