Institute of Chemistry, Inorganic Chemistry, University of Graz, 8010 Graz, Austria.
Inorg Chem. 2023 Apr 10;62(14):5669-5676. doi: 10.1021/acs.inorgchem.3c00228. Epub 2023 Mar 29.
An increasing number of discovered tungstoenzymes raises interest in the biomimetic chemistry of tungsten complexes in oxidation states +IV, +V, and +VI. Bioinspired (sulfur-rich) tungsten(VI) dioxido complexes are relatively prevalent in literature. Still, their energetically demanding reduction directly correlates with a small number of known tungsten(IV) oxido complexes, whose chemistry is not well explored. In this paper, a reduction of the [WO(6-MePyS)] (6-MePyS = 6-methylpyridine-2-thiolate) complex with PMe to a phosphine-stabilized tungsten(IV) oxido complex [WO(6-MePyS)(PMe)] is described. This tungsten(IV) complex partially releases one PMe ligand in solution, creating a vacant coordination site capable of activating dioxygen to form [WO(6-MePyS)] and OPMe. Therefore, [WO(6-MePyS)] can be used as a catalyst for the aerobic oxidation of PMe, rendering this complex a rare example of a tungsten system utilizing dioxygen in homogeneous catalysis. Additionally, the investigation of the reactivity of the tungsten(IV) oxido complex with acetylene, substrate of a tungstoenzyme acetylene hydratase (AH), revealed the formation of the tungsten(IV) acetylene adduct. Although this adduct was previously reported as an oxidation product of the tungsten(II) acetylene carbonyl complex, here it is obtained via substitution at the sulfur-rich tungsten(IV) center, mimicking the initial step of the first shell mechanism for AH as suggested by computational studies.
越来越多的钨酶的发现引起了人们对四价、五价和六价钨配合物的仿生化学的兴趣。生物启发(富含硫)的六价钨二氧配合物在文献中相对普遍。尽管如此,它们需要能量的还原直接与少数已知的四价钨氧配合物相关联,而这些配合物的化学性质尚未得到充分探索。在本文中,描述了用 PMe 将 [WO(6-MePyS)](6-MePyS = 6-甲基吡啶-2-硫醇盐)复合物还原为膦稳定的四价钨氧配合物 [WO(6-MePyS)(PMe)]。该钨(IV)配合物在溶液中部分释放一个 PMe 配体,形成一个空配位位,能够活化氧气形成 [WO(6-MePyS)] 和 OPMe。因此,[WO(6-MePyS)]可用作有氧氧化 PMe 的催化剂,使该配合物成为在均相催化中利用氧气的钨体系的罕见例子。此外,研究了钨(IV)氧配合物与乙炔的反应性,乙炔是一种钨酶乙炔水合酶(AH)的底物,发现了形成了钨(IV)乙炔加合物。尽管该加合物以前被报道为钨(II)乙炔羰基配合物的氧化产物,但这里是通过富硫的钨(IV)中心的取代获得的,模拟了计算研究建议的 AH 的第一壳层机制的初始步骤。