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Mechanism of the Catalytic Hydrodefluorination of Pentafluoropyridine by Group Six Triangular Cluster Hydrides Containing Phosphines: A Combined Experimental and Theoretical Study

机译:含膦的六组三方簇氢化物催化五氟吡啶加氢脱氟反应机理的实验与理论研究

摘要

The catalytic hydrodefluorination (HDF) of pentafluoropyridine in the presence of arylsilanes is catalyzed by the tungsten and molybdenum(IV) cluster hydrides of formula [M3S4H3(dmpe)3]+, W-1+ for M = W and Mo-1+ for M = Mo (dmpe = 1,2-(bis)dimethylphosphinoethane). The reaction proceeds regioselectively at the 4-position under microwave radiation to yield the 2,3,5,6-tetrafluoropyridine. Catalytic activity is higher for the tungsten complexes with turnover numbers close to 100, while reactions catalyzed by molybdenum compounds are faster. A mechanism for the HDF reaction has been proposed that explains these differences based on DFT calculations. The mechanism involves partial decoordination of the diphosphine ligand that generates an empty position in the metal coordination sphere. This position together with its neighbor M−H site are used to activate the C−F bond of the pentafluoropyridine through a M−H/C−F σ-bond metathesis mechanism involving a four-center transition state to give 2,3,5,6-tetrafluoropyridine. Subsequent coordination of the dangling diphosphine affords the para-substituted product and the [M3S4F3(dmpe)3]+, W-2+ for M = W and Mo-2+ for M = Mo, cluster fluoride. The structure of W-2+ has been determined by single-crystal X-ray diffraction experiments. In the presence of silanes the calculated mechanism for the cluster hydride regeneration also implies three steps: (i) partial decoordination of the diphosphine, (ii) M−F/Si−H σ-bond metathesis, and (iii) coordination of the dangling diphosphine, to afford the cluster hydride.
机译:在芳基硅烷存在下,五氟吡啶的催化加氢脱氟化氢(HDF)由式[M3S4H3(dmpe)3] +的钨和钼(IV)簇氢化物催化,M = W的W-1 +和M-1 +的Mo-1 + M = Mo(dmpe = 1,2-(双)二甲基膦基乙烷)。在微波辐射下,该反应在4-位区域选择性地进行,得到2,3,5,6-四氟吡啶。钨配合物的催化活性更高,周转数接近100,而钼化合物催化的反应更快。已经提出了HDF反应的机理,该机理基于DFT计算来解释这些差异。该机理涉及二膦配体的部分解配位,其在金属配位球中产生空位。该位置及其相邻的MH位点用于通过涉及四个中心过渡态的MH / CFσ键复分解机制来激活五氟吡啶的CF键,从而得到2,3,5 ,6-四氟吡啶。悬空的二膦的随后配位提供了对位取代的产物和[M3S4F3(dmpe)3] +,M = W的为W-2 +,M = Mo的为Mo-2 +,是氟化物簇。 W-2 +的结构已通过单晶X射线衍射实验确定。在存在硅烷的情况下,团簇氢化物再生的计算机理还包括三个步骤:(i)二膦的部分去配位;(ii)MF / Si-Hσ键复分解;(iii)悬挂的配位二膦,得到簇状氢化物。

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