Keith Jason M, Goddard William A
Materials Process and Simulation Center, MC (139-74), California Institute of Technology, Pasadena, California 91125, USA.
J Am Chem Soc. 2009 Feb 4;131(4):1416-25. doi: 10.1021/ja8040459.
We use quantum mechanics to elucidate the mechanism for the reaction of molecular oxygen with palladium-hydride complexes, (pyridine)(2)-Pd(II)(H)OAc, in toluene, focusing specifically on the direct insertion pathway of dioxygen into the Pd-H bond and pathways proceeding through a Pd(0) intermediate for both cis and trans starting configurations as well as with the assistance of an extra HOAc molecule We report the potential energy surfaces and structures for each of these pathways. This is the first examination of these two mechanisms for both cis and trans isomers of a system employing two monodentate ligands. It is the first case of acid-assisted reductive elimination from a square planar Pd-H. The calculated mechanisms indicate that cis/trans isomerization is feasible and demonstrates that the Pd(0) pathway is favored for both cis (DeltaDeltaH(double dagger) = 2.2 kcal/mol, DeltaDeltaG(double dagger) = 9.3 kcal/mol) and trans cases (HOAc-assisted; DeltaDeltaH(double dagger) = -2.6 kcal/mol, DeltaDeltaG(double dagger) = 5.8 kcal/mol) demonstrating that the presence of two monodentate ligands changes the mechanism from that of the bidentate case.
我们运用量子力学来阐明分子氧与钯氢配合物(吡啶)₂ - Pd(II)(H)OAc在甲苯中的反应机制,特别关注氧气直接插入钯氢键的途径以及对于顺式和反式起始构型通过钯(0)中间体进行的途径,还有在额外的醋酸分子协助下的途径。我们报告了这些途径中每一种的势能面和结构。这是对采用两个单齿配体的体系的顺式和反式异构体的这两种机制的首次研究。这是从平面正方形钯氢进行酸辅助还原消除的首个案例。计算出的机制表明顺式/反式异构化是可行的,并且表明钯(0)途径对于顺式(ΔΔH‡ = 2.2千卡/摩尔,ΔΔG‡ = 9.3千卡/摩尔)和反式情况(醋酸辅助;ΔΔH‡ = -2.6千卡/摩尔,ΔΔG‡ = 5.8千卡/摩尔)都是有利的,这表明两个单齿配体的存在改变了与双齿情况不同的机制。