Batool Samar, Langer Marcel, Myakala Stephen Nagaraju, Heiland Magdalena, Eder Dominik, Streb Carsten, Cherevan Alexey
Institute of Materials Chemistry, TU Wien, Getreidemarkt 9/BC/02, Vienna, 1060, Austria.
Institute of Inorganic Chemistry I, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.
Adv Mater. 2024 Feb;36(7):e2305730. doi: 10.1002/adma.202305730. Epub 2023 Dec 2.
Thiomolybdates are molecular molybdenum-sulfide clusters formed from Mo centers and sulfur-based ligands. For decades, they have attracted the interest of synthetic chemists due to their unique structures and their relevance in biological systems, e.g., as reactive sites in enzymes. More recently, thiomolybdates are explored from the catalytic point of view and applied as homogeneous and molecular mimics of heterogeneous molybdenum sulfide catalysts. This review summarizes prominent examples of thiomolybdate-based electro- and photocatalysis and provides a comprehensive analysis of their reactivities under homogeneous and heterogenized conditions. Active sites of thiomolybdates relevant for the hydrogen evolution reaction are examined, aiming to shed light on the link between cluster structure and performance. The shift from solution-phase to surface-supported thiomolybdates is discussed with a focus on applications in electrocatalysis and photocatalysis. The outlook highlights current trends and emerging areas of thiomolybdate research, ending with a summary of challenges and key takeaway messages based on the state-of-the-art research.
硫代钼酸盐是由钼中心和硫基配体形成的分子型硫化钼簇。几十年来,由于其独特的结构以及在生物系统中的相关性,例如作为酶中的活性位点,它们一直吸引着合成化学家的关注。最近,人们从催化的角度对硫代钼酸盐进行了探索,并将其用作非均相硫化钼催化剂的均相和分子模拟物。本综述总结了基于硫代钼酸盐的电催化和光催化的突出实例,并对其在均相和非均相条件下的反应活性进行了全面分析。研究了与析氢反应相关的硫代钼酸盐的活性位点,旨在阐明簇结构与性能之间的联系。讨论了从溶液相硫代钼酸盐到表面负载硫代钼酸盐的转变,重点关注其在电催化和光催化中的应用。展望部分突出了硫代钼酸盐研究的当前趋势和新兴领域,最后基于最新研究总结了挑战和关键信息。