首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Acidity enhancement of unsaturated bases of group 15 by association with borane and beryllium dihydride. Unexpected boron and beryllium Bronsted acids
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Acidity enhancement of unsaturated bases of group 15 by association with borane and beryllium dihydride. Unexpected boron and beryllium Bronsted acids

机译:通过与硼烷和二氢化铍缔合提高第15组不饱和碱的酸度。意外的硼和铍布朗斯台德酸

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摘要

The intrinsic acidity of CH2=CHXH2, HC equivalent to CXH2 (X = N, P, As, Sb) derivatives and of their complexes with BeH2 and BH3 has been investigated by means of high-level density functional theory and molecular orbital ab initio calculations, using as a reference the ethyl saturated analogues. The acidity of the free systems steadily increases down the group for the three series of derivatives, ethyl, vinyl and ethynyl. The association with both beryllium dihydride and borane leads to a very significant acidity enhancement, being larger for BeH2 than for BH3 complexes. This acidity enhancement, for the unsaturated compounds, is accompanied by a change in the acidity trends down the group, which do not steadily decrease but present a minimum value for both the vinyl- and the ethynyl-phosphine. When the molecule acting as the Lewis acid is beryllium dihydride, the pi-type complexes in which the BeH2 molecules interact with the double or triple bond are found, in some cases, to be more stable, in terms of free energies, than the conventional complexes in which the attachment takes place at the heteroatom, X. The most important finding, however, is that P, As, and Sb ethynyl complexes with BeH2 do not behave as P, As, or Sb Bronsted acids, but unexpectedly as Be acids.
机译:CH2 = CHXH2,相当于CXH2(X = N,P,As,Sb)衍生物的HC及其与BeH2和BH3的配合物的固有酸度已通过高密度密度泛函理论和分子轨道从头算的方法进行了研究,以乙基饱和类似物为参考。自由体系的酸度稳定地增加了乙基,乙烯基和乙炔基这三类衍生物的基团。与二氢化铍和硼烷的缔合导致酸度显着提高,BeH2的酸度大于BH3配合物。对于不饱和化合物,这种酸度的提高伴随着该酸基团向下的酸度趋势的改变,该趋势不会稳定地降低,但是对于乙烯基和乙炔基膦而言都是最小值。当作为路易斯酸的分子是二氢化铍时,在某些情况下,发现BeH2分子与双键或三键相互作用的pi型络合物在自由能方面比常规方法更稳定。最重要的发现是,带有BeH2的P,As和Sb乙炔基络合物的行为不像P,As或Sb布朗斯台德酸,而出乎意料的是Be酸。 。

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