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意想不到的酸度增强由 AlH3 与膦的缔合引发。

Unexpected acidity enhancement triggered by AlH3 association to phosphines.

机构信息

Departamento de Química, Facultad de Ciencias, Módulo 13, Universidad Autónoma de Madrid, Campus de Excelencia UAM-CSIC, Cantoblanco, 28049-Madrid, Spain.

出版信息

J Phys Chem A. 2012 Jun 28;116(25):6950-4. doi: 10.1021/jp304186m. Epub 2012 Jun 8.

Abstract

The complexes formed by the interaction between a series of phosphines R-PH(2) (R = H, CH(3), c-C(3)H(5), C(6)H(5)) and AlH(3) have been investigated through the use of high-level G4 ab initio calculations. These very stable complexes behave as much stronger acids than the isolated phosphines. This dramatic acidity enhancement, which can be as high as 174 kJ mol(-1), results from a much greater stabilization of the anionic deprotonated species with respect to the neutral one, upon AlH(3) association. This effect depends quantitatively on the nature of the substituent R and is smaller for R = C(6)H(5) because of the conjugation of the P lone pair with the aromatic system. More unexpectedly, however, the phosphine-alane complexes, RPH(2):AlH(3), are more acidic than the corresponding phosphine-borane RPH(2):BH(3) analogues. This unexpected result is due to the enhanced stability of the anionic deprotonated species for complexes involving AlH(3), because the delocalization of the newly created P lone pair with the P-Al bonding density is more favorable when the Lewis acid is aluminum trihydride than when it is borane.

摘要

通过使用高精度 G4 从头算方法,研究了一系列膦 R-PH(2)(R = H、CH(3)、c-C(3)H(5)、C(6)H(5))与 AlH(3)之间相互作用形成的配合物。这些非常稳定的配合物表现出比游离膦更强的酸性。这种显著的酸度增强,可高达 174 kJ mol(-1),是由于在 AlH(3)结合后,阴离子去质子化物种相对于中性物种得到了更大的稳定化。这种效应定量地取决于取代基 R 的性质,对于 R = C(6)H(5),由于 P 孤对与芳构体系的共轭,其稳定性较小。然而,更出人意料的是,膦-烷配合物 RPH(2):AlH(3)比相应的膦-硼烷 RPH(2):BH(3)类似物更具酸性。这种出乎意料的结果归因于涉及 AlH(3)的配合物中阴离子去质子化物种的稳定性增强,因为当路易斯酸是三氢化铝而不是硼烷时,新创建的 P 孤对与 P-Al 键合密度的离域化更为有利。

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