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Influence of the Diphosphine Coordinated to Molybdenum and Tungsten Triangular M3S4 Cluster Hydrides in the Catalytic Hydrodefluorination of Pentafluoropyridine

机译:二膦配位对钼和钨三角形m3s4簇氢化物对五氟吡啶催化加氢脱氟的影响

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摘要

Hydrido molybdenum and tungsten(IV) cluster cations of formula [M3S4H3(dppe)3]+ (dppe = 1,2-(bis)dimethylphosphinoethane), [Mo-1]+ (M = Mo) and [W-1]+ (M = W), have been isolated by reacting their halide precursors with borohydride. Synthetic procedures have been optimized by appropriate choice of the solvent. Furthermore, [M3S4F3(dppe)3]+ fluorido cluster complexes, [Mo-2]+ (M = Mo) and [W-2]+ (M = W) have been prepared through halogen substitution reactions using an excess of cesium fluoride. The structures of [Mo-1]+ and [Mo-2]+ have been determined by single crystal X-ray diffraction experiments. These [M-1]+ hydrido and [M-2]+ fluorido clusters have been used as catalysts and precatalysts, respectively, in the catalytic hydrodefluorination (HDF) of pentafluoropyridine using HSiMe2Ph as hydrogen source. The reaction proceeds under microwave and reflux conditions to selectively afford 2,3,5,6-tetrafluoropyridine. The [W-1]+ hydrido cluster is the most efficient catalyst with turnover numbers of 124, while the [Mo-1]+ hydrido cluster reacts faster. Fluorido [Mo-2]+ and [W-2]+ complexes provide lower yields and turnover numbers. In general, the molybdenum and tungsten [M-1]+ and [M-2]+ diphosphino complexes are more efficient than their dmpe (1,2-(bis)dimethylphosphinoethano) analogues and activate pentafluoropyridine under softer conditions
机译:式[M3S4H3(dppe)3] +(dppe = 1,2-(双)二甲基膦基乙烷),[Mo-1] +(M = Mo)和[W-1] +的氢钼和钨(IV)簇阳离子(M = W),已经通过使它们的卤化物前体与硼氢化物反应而分离。通过适当选择溶剂可以优化合成程序。此外,使用过量的氟化铯通过卤素取代反应制备了[M3S4F3(dppe)3] +氟团簇复合物,[Mo-2] +(M = Mo)和[W-2] +(M = W) 。 [Mo-1] +和[Mo-2] +的结构已通过单晶X射线衍射实验确定。在使用HSiMe2Ph作为氢源的五氟吡啶催化加氢脱氟化氢(HDF)中,这些[M-1] +氢化物和[M-2] +氟化物簇已分别用作催化剂和预催化剂。反应在微波和回流条件下进行以选择性地提供2,3,5,6-四氟吡啶。 [W-1] +氢化物簇是最有效的催化剂,其周转数为124,而[Mo-1] +氢化物簇反应更快。 Fluorido [Mo-2] +和[W-2] +复合物的收率和周转率较低。通常,钼和钨[M-1] +和[M-2] +二膦配位化合物比其dmpe(1,2-(双)二甲基膦基乙基乙醇)类似物更有效,并在较软的条件下活化五氟吡啶

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