Brown Stephen E, Warren Mark R, Kubicki Dominik J, Fitzpatrick Ann, Pike Sebastian D
Department of Chemistry, University of Warwick, Coventry CV4 7AL, U.K.
Diamond Light Source, Harwell Science & Innovation Campus, Didcot OX11 0DE, U.K.
J Am Chem Soc. 2024 Jun 26;146(25):17325-17333. doi: 10.1021/jacs.4c04068. Epub 2024 Jun 12.
Titanium-oxo clusters can undergo photochemical reactions under UV light, resulting in the reduction of the titanium-oxo core and oxidation of surface ligands. This is an important step in photocatalytic processes in light-absorbing Ti/O-based clusters, metal-organic frameworks, and (nano)material surfaces; however, studying the direct outcome of this photochemical process is challenging due to the fragility of the immediate photoproducts. In this report, titanium-oxo clusters [TiO(OPr)(L)] ( = 4, L = OPPh, or = 6, L = OCCHBu) undergo a two-electron photoredox reaction in the single-crystal state via an irreversible single-crystal to single-crystal (SC-SC) transformation initiated by a UV laser. The process is monitored by single crystal X-ray diffraction revealing the photoreduction of the cluster with coproduction of an (oxidized) acetone ligand, which is retained in the structure as a ligand to Ti(3+). The results demonstrate that photochemistry of inorganic molecules can be studied in the single crystal phase, allowing characterization of photoproducts which are unstable in the solution phase.
钛氧簇在紫外光下可发生光化学反应,导致钛氧核心的还原和表面配体的氧化。这是光吸收性钛/氧基簇、金属有机框架和(纳米)材料表面光催化过程中的重要一步;然而,由于直接光产物的脆弱性,研究这一光化学过程的直接结果具有挑战性。在本报告中,钛氧簇[TiO(OPr)(L)](n = 4,L = OPPh,或n = 6,L = OCCHBu)在单晶状态下通过紫外激光引发的不可逆单晶到单晶(SC-SC)转变经历双电子光氧化还原反应。该过程通过单晶X射线衍射进行监测,揭示了簇的光还原以及(氧化的)丙酮配体的共同产生,该配体作为Ti(3+)的配体保留在结构中。结果表明,可以在单晶相中研究无机分子的光化学,从而对在溶液相中不稳定的光产物进行表征。