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相邻路易斯酸存在促进的磷原子上的锥形翻转。第13族元素与大环双(氨基膦)配体[P(2)N(2)]([P(2)N(2)] = [PhP(CH(2)SiMe(2)NSiMe(2)CH(2))(2)PPh])的配位化学 。

Pyramidal Inversion at Phosphorus Facilitated by the Presence of Proximate Lewis Acids. Coordination Chemistry of Group 13 Elements with the Macrocyclic Bis(amidophosphine) Ligand [P(2)N(2)] ([P(2)N(2)] = [PhP(CH(2)SiMe(2)NSiMe(2)CH(2))(2)PPh]).

作者信息

Fryzuk Michael D., Giesbrecht Garth R., Rettig Steven J.

机构信息

Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, B.C., Canada V6T 1Z1.

出版信息

Inorg Chem. 1998 Dec 28;37(26):6928-6934. doi: 10.1021/ic9805978.

Abstract

Investigations on the preparation of four- and five-coordinate aluminum and gallium bis(amidophosphine) derivatives are reported. The reaction of the macrocyclic ligand precursor anti-Li(2)(THF)(2)[P(2)N(2)] ([P(2)N(2)] = [PhP(CH(2)SiMe(2)NSiMe(2)CH(2))(2)PPh]) with AlCl(3) or GaCl(3) in toluene at 25 degrees C leads to the formation of the four-coordinate species anti-MCl[P(2)N(2)] (M = Al (1), Ga (2)). An X-ray diffraction study of anti-GaCl[P(2)N(2)] shows it to be monomeric with a distorted tetrahedral geometry at Ga; only one of the phosphine donors of the [P(2)N(2)] ligand binds to the gallium, resulting in the retention of the anti-configuration. The solution NMR spectra are consistent with C(s)() symmetry. The addition of AlCl(3) or GaCl(3) to the macrocyclic ligand precursor syn-Li(2)(dioxane)[P(2)N(2)] in toluene at 25 degrees C yields the five-coordinate complexes syn-MCl[P(2)N(2)] (M = Al (3), Ga (4)). The X-ray crystal structure of syn-GaCl[P(2)N(2)] reveals a trigonal bipyramidal geometry about the metal atom, necessitating the coordination of both phosphorus atoms. The solution NMR spectra are consistent with a C(2)(v)() symmetric complex. Heating the anti complexes results in the clean conversion to the syn complexes, with pyramidal inversion observed at phosphorus. The kinetics of this inversion were studied by (1)H NMR spectroscopy and found to be first-order. Barriers to pyramidal inversion (DeltaG()) were calculated to be 29.1 and 30.1 kcal mol(-)(1) for the aluminum and gallium complexes, respectively; these barriers are approximately 2-3 kcal mol(-)(1) lower than that determined for the metal-free, protonated compounds anti- and syn-H(2)[P(2)N(2)]. It is suggested that the role that the metals play in this inversion, based on the values of DeltaG(), involves the large negative entropies of activation and thus help organize the transition state.

摘要

报道了关于四配位和五配位铝和镓双(酰胺基膦)衍生物制备的研究。大环配体前体反式-Li₂(THF)₂[P₂N₂]([P₂N₂] = [PhP(CH₂SiMe₂NSiMe₂CH₂)₂PPh])与AlCl₃或GaCl₃在甲苯中于25℃反应,生成四配位物种反式-MCl[P₂N₂](M = Al (1),Ga (2))。反式-GaCl[P₂N₂]的X射线衍射研究表明它是单体,Ga具有扭曲的四面体几何构型;[P₂N₂]配体中只有一个膦供体与镓结合,导致反式构型得以保留。溶液核磁共振谱与Cₛ对称性一致。在甲苯中于25℃将AlCl₃或GaCl₃加入到大环配体前体顺式-Li₂(二氧六环)[P₂N₂]中,得到五配位配合物顺式-MCl[P₂N₂](M = Al (3),Ga (4))。顺式-GaCl[P₂N₂]的X射线晶体结构揭示了围绕金属原子的三角双锥几何构型,这需要两个磷原子都参与配位。溶液核磁共振谱与C₂ᵥ对称配合物一致。加热反式配合物会干净地转化为顺式配合物,在磷原子处观察到锥式翻转。通过¹H核磁共振光谱研究了这种翻转的动力学,发现其为一级反应。计算得出铝和镓配合物的锥式翻转能垒(ΔG⁺)分别为29.1和30.1 kcal mol⁻¹;这些能垒比无金属的质子化化合物反式-和顺式-H₂[P₂N₂]所确定的能垒低约2 - 3 kcal mol⁻¹。基于ΔG⁺的值,表明金属在这种翻转中所起的作用涉及较大负的活化熵,从而有助于组织过渡态。

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