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Density functional theory studies on the reagent

机译:试剂的密度泛函理论研究

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We report density functional theory geometry optimizations at the B3LYP/6-31 lG(d,p)level of theory for the title reagent.Four stationary points on the molecular potential energy surface were located and characterized.Three of these stationary points are energy minima,one a saddle point.The minima correspond to the conventional Ph_3PBr_2(three-fold Br-P-Br axis with twisted phenyl rings),the ion-pair [Ph_3PBr]~+Br and a four-coordinated Ph_3PBr,spoke structure that can best be described as charge transfer on account of the substantial charge transfer from the Ph_3P fragment to Br_2(as determined by a standard Mulliken population analysis and other considerations).The particular saddle point found corresponds to a three-fold Br-P-Br structure with coplanar phenyl rings.Single point B3LYP/6-31 l+g(3d,2p)calculations were done at the stationary point geometries in order to investigate possible deficiencies in the basis set.Solvent effects for the three solvents water,dichloroethane and cyclohexane were modelled using the self consistent reaction field Onsager method at the single point B3LYP/6-31 l+g(3d,2p)level of theory.In the gas phase,the charge transfer complex is the most stable of the four;in solution it is the least stable.
机译:我们在标题试剂的理论级B3LYP / 6-31 lG(d,p)上报告了密度泛函理论的几何优化,在分子势能面上找到并表征了四个固定点,其中三个固定点是最小能量最小值对应于常规的Ph_3PBr_2(具有扭曲的苯环的三倍Br-P-Br轴),离子对[Ph_3PBr]〜+ Br和四配位的Ph_3PBr,辐照结构可以最好将其描述为电荷转移,因为从Ph_3P片段到Br_2有大量电荷转移(通过标准Mulliken种群分析和其他考虑确定)。发现的特定鞍点对应于三倍的Br-P-Br结构为了研究基点中可能存在的缺陷,对三种溶剂水,二氯乙烷和cy的溶剂效应进行了计算。使用自洽反应场Onsager方法在理论上的单点B3LYP / 6-31 l + g(3d,2p)水平上模拟氯己烷。在气相中,电荷转移络合物是这四种化合物中最稳定的;解决方案是最不稳定的。

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