Chemical Engineering and Chemistry, Eindhoven University of Technology, Den Dolech 2, 5600 MB Eindhoven, The Netherlands.
Chemistry. 2013 Jul 1;19(27):8991-9004. doi: 10.1002/chem.201300557. Epub 2013 May 13.
The design and preparation of an asymmetrically substituted and bulky phosphinine was achieved by introducing sterically demanding substituents into specific positions of a rigid phosphorus-heterocyclic framework. Compound 5 shows, at the same time, axial chirality and a sufficiently high energy barrier for internal rotation to prevent enantiomerization. Both enantiomers of 5 were isolated by means of chiral analytical HPLC, and their absolute configurations could be assigned by combining experimental data and DFT calculations. Despite its substitution pattern, 5 can still coordinate to transition-metal centers through the lone pair of electrons on the phosphorus atom. Rapid C-H activation on the adjacent aryl substituent at the 2-position of the phosphorus heterocycle was achieved by using [{CpIrCl2}2] (Cp=1,2,3,4,5-pentamethylcyclopentadienyl) as a metal precursor. A racemic mixture of 5 was applied as a π-accepting low-coordinate phosphorus ligand in the Rh-catalyzed hydroformylation of trans-2-octene, which showed a clear preference for the formation of 2-methyloctanal.
通过在刚性磷杂环骨架的特定位置引入空间位阻较大的取代基,实现了不对称取代和庞大膦的设计和制备。化合物 5 同时具有轴手性和足够高的内旋转能垒,以防止对映体转化。通过手性分析 HPLC,可分离 5 的两种对映异构体,并通过结合实验数据和 DFT 计算来确定其绝对构型。尽管 5 的取代模式复杂,但仍可通过磷原子上的孤对电子与过渡金属中心配位。使用 [{CpIrCl2}2](Cp=1,2,3,4,5-五甲基环戊二烯基)作为金属前体,可在磷杂环 2 位上的邻位芳基取代基上快速进行 C-H 活化。将 5 的外消旋混合物作为 Rh 催化的反式-2-辛烯氢甲酰化反应中的 π-接受低配位磷配体,该配体明显有利于 2-甲基辛醛的形成。