Eizaguirre Ane, Mó Otilia, Yáñez Manuel, Guillemin Jean-Claude
Departamento de Química, C-9, Universidad Autónoma de Madrid, Cantoblanco 28049 Madrid, Spain.
Chemistry. 2008;14(33):10423-9. doi: 10.1002/chem.200801012.
The gas-phase acidity of R--XH (R=H, CH(3), CH(2)CH(3), CH==CH(2), C[triple chemical bond]CH; X=Be, Mg, Ca) alkaline-earth-metal derivatives has been investigated through the use of high-level CCSD(T) calculations by using a 6-311+G(3df,2p) basis set. BeH(2) is a stronger acid than BH(3) and CH(4) for two concomitant reasons: 1) the dissociation energy of the Be--H bond is smaller than the dissociation energies of the B--H and C--H bonds, and 2) the electron affinity of BeH(.) is larger in absolute value than those of BH(2) (.) and CH(3) (.). The acidity also increases on going from BeH(2) to MgH(2) due to these two same factors. Quite importantly, despite the fact that the X--H bonds in the R--XH (X=Mg, Ca) derivatives exhibit the expected X(delta+)--H(delta-) polarity, they behave as metal acids in the gas phase and only Be derivatives behave as carbon acids in the gas phase. The ethylberyllium hydride exhibits an unexpected high acidity compared with the methyl derivative because deprotonation of the system is accompanied by a cyclization that stabilizes the anion. Similarly to that found for derivatives that contain heteroatoms from groups 14, 15, and 16, the unsaturated compounds are stronger acids than the saturated counterparts, with the only exception of the Ca-vinyl derivative. Most importantly, among ethyl, vinyl, and ethynyl derivatives containing a heteroatom of the main group of the Periodic Table, those containing Be, Mg, and Ca are among the strongest gas-phase acids.
通过使用高水平的耦合簇单双激发并包含微扰三重激发(CCSD(T))计算方法,采用6 - 311 + G(3df,2p)基组,研究了R - XH(R = H、CH₃、CH₂CH₃、CH==CH₂、C≡CH;X = Be、Mg、Ca)碱土金属衍生物的气相酸度。由于两个共同原因,BeH₂是比BH₃和CH₄更强的酸:1)Be - H键的解离能小于B - H键和C - H键的解离能;2)BeH(.)的电子亲和能绝对值大于BH₂(.)和CH₃(.)的电子亲和能绝对值。由于这两个相同因素,从BeH₂到MgH₂酸度也会增加。非常重要的是,尽管R - XH(X = Mg、Ca)衍生物中的X - H键呈现预期的X(δ+) - H(δ-)极性,但它们在气相中表现为金属酸,只有Be衍生物在气相中表现为碳酸。与甲基衍生物相比,乙基氢化铍表现出意外的高酸度,因为该体系的去质子化伴随着环化,从而使阴离子稳定。与含有第14、15和16族杂原子的衍生物情况类似,不饱和化合物比饱和对应物更强酸,唯一的例外是Ca - 乙烯基衍生物。最重要的是,在含有元素周期表主族杂原子的乙基、乙烯基和乙炔基衍生物中,含有Be、Mg和Ca的那些是最强的气相酸之一。