Picazo Oscar, Alkorta Ibon, Elguero José
Instituto de Química Médica (CSIC), Juan de la Cierva, 3, E-28006 Madrid, Spain.
J Org Chem. 2003 Sep 19;68(19):7485-9. doi: 10.1021/jo035026y.
The chiral recognition in the formation of hydrogen-bonded (HB) dimers of 1,6a-dihydropyrrolo[2,3-b]pyrrole derivatives as well as in their proton-transfer processes have been studied by means of ab initio calculations. The heterochiral dimers are in general the most stable ones, but amphiprotic substituents that are able to form attactive interactions with twin groups revert this tendency. Energy differences up to 4.0 kcal/mol have been found favoring the homo- or heterochiral complexes. Two possible proton-transfer processes have been studied, the concerted one and the nonconcerted one. The compresion of the systems in the transition structures produce an increase in the energetic differences when compared to the corresponding minima complexes. A Steiner-Limbach relationship has been found for the geometrical properties of the HB in the minima and transition states calculated here. The electron density and its Laplacian at the bond critical point have been found to correlate with the HB distance.
通过从头算计算研究了1,6a-二氢吡咯并[2,3 - b]吡咯衍生物形成氢键(HB)二聚体过程中的手性识别及其质子转移过程。一般来说,异手性二聚体是最稳定的,但能够与孪生基团形成吸引相互作用的两性质子取代基会改变这种趋势。已发现能量差异高达4.0千卡/摩尔,有利于同手性或异手性配合物。研究了两种可能的质子转移过程,即协同过程和非协同过程。与相应的最低能量配合物相比,过渡结构中体系的压缩导致能量差异增加。在此计算的最低能量态和过渡态中,发现了HB几何性质的施泰纳 - 林巴赫关系。已发现键临界点处的电子密度及其拉普拉斯算子与HB距离相关。