Division of Chemistry and Chemical Engineering, California Institute of Technology , Pasadena, California 91125, United States.
J Am Chem Soc. 2014 Oct 1;136(39):13672-83. doi: 10.1021/ja504667f. Epub 2014 Sep 17.
New approaches toward the generation of late first-row metal catalysts that efficiently facilitate two-electron reductive transformations (e.g., hydrogenation) more typical of noble-metal catalysts is an important goal. Herein we describe the synthesis of a structurally unusual S = 1 bimetallic Co complex, [((Cy)PBP)CoH]2 (1), supported by bis(phosphino)boryl and bis(phosphino)hydridoborane ligands. This complex reacts reversibly with a second equivalent of H2 (1 atm) and serves as an olefin hydrogenation catalyst under mild conditions (room temperature, 1 atm H2). A bimetallic Co species is invoked in the rate-determining step of the catalysis according to kinetic studies. A structurally related Ni(I)Ni(I) dimer, [((Ph)PBP)Ni]2 (3), has also been prepared. Like Co catalyst 1, Ni complex 3 displays reversible reactivity toward H2, affording the bimetallic complex [((Ph)PBHP)NiH]2 (4). This reversible behavior is unprecedented for Ni(I) species and is attributed to the presence of a boryl-Ni bond. Lastly, a series of monomeric ((tBu)PBP)NiX complexes (X = Cl (5), OTf (6), H (7), OC(H)O (8)) have been prepared. The complex ((tBu)PBP)NiH (7) shows enhanced catalytic olefin hydrogenation activity when directly compared with its isoelectronic/isostructural analogues where the boryl unit is substituted by a phenyl or amine donor, a phenomenon that we posit is related to the strong trans influence exerted by the boryl ligand.
开发新型的第一过渡系金属催化剂以高效地促进通常由贵金属催化剂促进的两电子还原转化(例如氢化)是一个重要的目标。在此,我们描述了一种结构不寻常的 S = 1 双金属 Co 配合物 [((Cy)PBP)CoH]2(1)的合成,该配合物由双(膦基)硼基和双(膦基)氢硼基配体支撑。该配合物可与第二当量的 H2(1 atm)可逆反应,并在温和条件下(室温,1 atm H2)用作烯烃氢化催化剂。根据动力学研究,双金属 Co 物种被认为是催化反应的速控步骤。还制备了结构相关的 Ni(I)Ni(I)二聚体 [((Ph)PBP)Ni]2(3)。与 Co 催化剂 1 一样,Ni 配合物 3 对 H2 表现出可逆反应性,生成双金属配合物 [((Ph)PBHP)NiH]2(4)。这种可逆行为对于 Ni(I)物种来说是前所未有的,归因于硼基-Ni 键的存在。最后,还制备了一系列单体 ((tBu)PBP)NiX 配合物(X = Cl(5)、OTf(6)、H(7)、OC(H)O(8))。与具有取代的硼基单元的苯或胺供体的等电子/等结构类似物相比,配合物 ((tBu)PBP)NiH(7)直接显示出增强的催化烯烃氢化活性,我们认为这种现象与硼基配体施加的强反式影响有关。