Gorlaeus Laboratories, Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
Inorg Chem. 2013 Jul 15;52(14):8190-201. doi: 10.1021/ic400973t. Epub 2013 Jul 3.
A systematic library of 24 nickel(II) complexes with bidentate diphosphane ligands was synthesized, and the solid-state structures of five of them were determined with X-ray crystallography. The compounds C1-C3 are common P2Ni(II)X2-type complexes, while C4 contains a unique P2Ni(II)(NH3)(OAc) square-planar structure with a P2NO donor set and C5 constitutes a rare (P2Ni(II))2(μ-OH)2 dinuclear compound. The catalytic activity of all complexes was tested in the hydrogenation and/or isomerization of 1-octene in a CH2Cl2/CH3OH reaction medium. Catalyst precursors bearing ligands with o-alkoxy aryl rings selectively hydrogentate 1-octene to n-octane, while catalytic systems comprising ligands without the o-alkoxy functionality selectively isomerize the substrate to a mixture of internal alkenes, mostly cis- and trans-2-octene. The conversion is enhanced by equipping the ligand aryl rings with electron-donating alkoxy groups, by increasing the steric bulk of the backbone and/or the aryl rings, by employing relatively noncoordinating anions, and by adding a base as the cocatalyst. Using the compound [Ni(L3X)I2] as the catalyst precursor and upon application of standard hydrogenation conditions, full conversion of the substrate was achieved in 1 h to isomerization products only (TON = 1940). When a catalytic amount of the base is added, a similar result is obtained even in the absence of H2. A maximum TON of 4500 in 1 h with 96% selectivity for n-octane was achieved by employing [Ni(oMeO-L3X)(NH3)(OAc)]PF6 as the catalyst precursor.
合成了 24 个具有双齿二膦配体的镍(II)配合物的系统库,并通过 X 射线晶体学确定了其中五个的固态结构。化合物 C1-C3 是常见的 P2Ni(II)X2 型配合物,而 C4 含有独特的 [P2Ni(II)(NH3)(OAc)]+ 正方形平面结构,具有 P2NO 给体集,C5 构成了罕见的 [(P2Ni(II))2(μ-OH)2]2+ 双核化合物。所有配合物的催化活性均在 CH2Cl2/CH3OH 反应介质中 1-辛烯的加氢和/或异构化反应中进行了测试。带有邻烷氧基芳基环的配体的催化剂前体选择性地将 1-辛烯氢化为正辛烷,而不具有邻烷氧基官能团的催化体系则将底物选择性异构化为内部烯烃的混合物,主要是顺式和反式 2-辛烯。通过在配体芳环上引入供电子的烷氧基基团、增加骨架和/或芳环的空间位阻、使用相对非配位的阴离子以及添加碱作为共催化剂,可增强转化率。使用化合物 [Ni(L3X)I2] 作为催化剂前体,并在应用标准加氢条件下,仅在 1 小时内即可实现底物的完全转化为异构化产物(TON = 1940)。当添加催化量的碱时,即使在没有 H2 的情况下,也可以获得类似的结果。当使用 [Ni(oMeO-L3X)(NH3)(OAc)]PF6 作为催化剂前体时,在 1 小时内可实现高达 4500 的 TON,且正辛烷的选择性高达 96%。