Zhang Jubo, Barakat Khaldoon A, Cundari Thomas R, Gunnoe T Brent, Boyle Paul D, Petersen Jeffrey L, Day Cynthia S
Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695-8204, USA.
Inorg Chem. 2005 Nov 14;44(23):8379-90. doi: 10.1021/ic051074k.
Reaction of (PCP)Ru(CO)(Cl) (1) with NaBAr'4 yields the bimetallic product [(PCP)Ru(CO)(mu-Cl)][BAr'4] (2). The monomeric five-coordinate complexes [(PCP)Ru(CO)(eta1-ClCH2Cl)][BAr'4] (3) and [(PCP)Ru(CO)(eta1-N2)][BAr'4] (4) are synthesized upon reaction of (PCP)Ru(CO)(OTf) (6) with NaBAr'4 in CH2Cl2 or C6H5F, respectively. The solid-state structures of 2, 3, and 4 have been determined by X-ray diffraction studies of single crystals. The reaction of 3 with PhCHN2 or PhCCH affords carbon-carbon coupling products involving the aryl group of the PCP ligand in transformations that likely proceed via the formation of Ru carbene or vinylidene intermediates. Density functional theory and hybrid quantum mechanics/molecular mechanics calculations were performed to investigate the bonding of weak bases to the 14-electron fragment [(PCP)Ru(CO)]+ and the energetics of different isomers of the product carbene and vinylidene complexes.
(PCP)Ru(CO)(Cl)(1)与NaBAr'4反应生成双金属产物[[(PCP)Ru(CO)]2(μ-Cl)][BAr'4](2)。分别在二氯甲烷或苯氟中,(PCP)Ru(CO)(OTf)(6)与NaBAr'4反应合成了单体五配位配合物[(PCP)Ru(CO)(η1-ClCH2Cl)][BAr'4](3)和[(PCP)Ru(CO)(η1-N2)][BAr'4](4)。通过单晶X射线衍射研究确定了2、3和4的固态结构。3与苯基亚甲基叠氮或苯乙炔反应,在可能通过形成钌卡宾或亚乙烯基中间体进行的转化中,得到涉及PCP配体芳基的碳-碳偶联产物。进行了密度泛函理论和混合量子力学/分子力学计算,以研究弱碱与14电子片段[(PCP)Ru(CO)]+的键合以及产物卡宾和亚乙烯基配合物不同异构体的能量学。