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硼的奇妙化学性质:膦硼烷酸性增强

The ever-surprising chemistry of boron: enhanced acidity of phosphine.boranes.

作者信息

Hurtado Marcela, Yánez Manuel, Herrero Rebeca, Guerrero Andrés, Dávalos Juan Z, Abboud José-Luis M, Khater Brahim, Guillemin Jean-Claude

机构信息

Departamento de Química, C-9, Universidad Autónoma de Madrid, Cantoblanco, 28049 Madrid, Spain.

出版信息

Chemistry. 2009;15(18):4622-9. doi: 10.1002/chem.200802307.

Abstract

The acidity-enhancing effect of BH(3) in gas-phase phosphineboranes compared to the corresponding free phosphines is enormous, between 13 and 18 orders of magnitude in terms of ionization constants. Thus, the enhancement of the acidity of protic acids by Lewis acids usually observed in solution is also observed in the gas phase. For example, the gas-phase acidities (GA) of MePH(2) and MePH(2)BH(3) differ by about 118 kJ mol(-1) (see picture).The gas-phase acidity of a series of phosphines and their corresponding phosphineborane derivatives was measured by FT-ICR techniques. BH(3) attachment leads to a substantial increase of the intrinsic acidity of the system (from 80 to 110 kJ mol(-1)). This acidity-enhancing effect of BH(3) is enormous, between 13 and 18 orders of magnitude in terms of ionization constants. This indicates that the enhancement of the acidity of protic acids by Lewis acids usually observed in solution also occurs in the gas phase. High-level DFT calculations reveal that this acidity enhancement is essentially due to stronger stabilization of the anion with respect to the neutral species on BH(3) association, due to a stronger electron donor ability of P in the anion and better dispersion of the negative charge in the system when the BH(3) group is present. Our study also shows that deprotonation of ClCH(2)PH(2) and ClCH(2)PH(2)BH(3) is followed by chloride departure. For the latter compound deprotonation at the BH(3) group is found to be more favorable than PH(2) deprotonation, and the subsequent loss of Cl(-) is kinetically favored with respect to loss of Cl(-) in a typical S(N)2 process. Hence, ClCH(2)PH(2)BH(3) is the only phosphineborane adduct included in this study which behaves as a boron acid rather than as a phosphorus acid.

摘要

与相应的游离膦相比,BH₃在气相膦硼烷中增强酸性的效果非常显著,就电离常数而言,增强幅度在13到18个数量级之间。因此,通常在溶液中观察到的路易斯酸对质子酸酸性的增强在气相中也能观察到。例如,MePH₂和MePH₂BH₃的气相酸度(GA)相差约118 kJ mol⁻¹(见图)。通过傅里叶变换离子回旋共振(FT-ICR)技术测量了一系列膦及其相应膦硼烷衍生物的气相酸度。BH₃的附着导致体系固有酸度大幅增加(从80到110 kJ mol⁻¹)。BH₃这种增强酸性的效果非常显著,就电离常数而言,增强幅度在13到18个数量级之间。这表明通常在溶液中观察到的路易斯酸对质子酸酸性的增强在气相中也会发生。高水平的密度泛函理论(DFT)计算表明,这种酸性增强主要是由于在BH₃缔合时,阴离子相对于中性物种的稳定性增强,这是因为阴离子中P的给电子能力更强,并且当存在BH₃基团时,体系中的负电荷能更好地分散。我们的研究还表明,ClCH₂PH₂和ClCH₂PH₂BH₃去质子化后会伴随氯离子离去。对于后一种化合物,发现BH₃基团去质子化比PH₂去质子化更有利,并且随后Cl⁻的损失在动力学上比典型的SN2过程中Cl⁻的损失更有利。因此,ClCH₂PH₂BH₃是本研究中唯一表现为硼酸而非磷酸的膦硼烷加合物。

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