Lee Yunbeom, Ki Hosung, Im Donghwan, Eom Seunghwan, Gu Jain, Lee Seonggon, Kim Jungmin, Cha Yongjun, Lee Kyung Won, Zerdane Serhane, Levantino Matteo, Ihee Hyotcherl
Center for Advanced Reaction Dynamics, Institute for Basic Science (IBS), Daejeon, 34141, Republic of Korea.
Department of Chemistry and KI for the BioCentury, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
J Am Chem Soc. 2023 Nov 1;145(43):23715-23726. doi: 10.1021/jacs.3c08166. Epub 2023 Oct 19.
[Ce(III)Cl], with its earth-abundant metal element, is a promising photocatalyst facilitating carbon-halogen bond activation. Still, the structure of the reaction intermediate has yet to be explored. Here, we applied time-resolved X-ray liquidography (TRXL), which allows for direct observation of the structural details of reaction intermediates, to investigate the photocatalytic reaction of [Ce(III)Cl]. Structural analysis of the TRXL data revealed that the excited state of [Ce(III)Cl] has Ce-Cl bonds that are shorter than those of the ground state and that the Ce-Cl bond further contracts upon oxidation. In addition, this study represents the first application of TRXL to both photocatalyst-only and photocatalyst-and-substrate samples, providing insights into the substrate's influence on the photocatalyst's reaction dynamics. This study demonstrates the capability of TRXL in elucidating the reaction dynamics of photocatalysts under various conditions and highlights the importance of experimental determination of the structures of reaction intermediates to advance our understanding of photocatalytic mechanisms.
[Ce(III)Cl]含有地球上储量丰富的金属元素,是一种有前景的促进碳 - 卤键活化的光催化剂。然而,反应中间体的结构尚未得到探索。在此,我们应用时间分辨X射线液体成像技术(TRXL)来研究[Ce(III)Cl]的光催化反应,该技术能够直接观察反应中间体的结构细节。对TRXL数据的结构分析表明,[Ce(III)Cl]的激发态中Ce - Cl键比基态中的短,并且Ce - Cl键在氧化时会进一步收缩。此外,本研究首次将TRXL应用于仅含光催化剂和光催化剂与底物的样品,为底物对光催化剂反应动力学的影响提供了见解。这项研究展示了TRXL在阐明各种条件下光催化剂反应动力学方面的能力,并强调了通过实验确定反应中间体结构对于推进我们对光催化机理理解的重要性。