Mulliken Center for Theoretical Chemistry, Rheinische Friedrich-Wilhelms-Universität Bonn, Beringstr. 4, 53115 Bonn, Germany.
Beilstein J Org Chem. 2014 Jun 5;10:1299-307. doi: 10.3762/bjoc.10.131. eCollection 2014.
This study investigates the effect of substitution with different functional groups and of molecular flexibility by changing within the axle from a single C-C bond to a double C=C bond. Therefore, we present static quantum chemical calculations at the dispersion-corrected density functional level (DFT-D3) for several Leigh-type rotaxanes. The calculated crystal structure is in close agreement with the experimental X-ray data. Compared to a stiffer axle, a more flexible one results in a stronger binding by 1-3 kcal/mol. Alterations of the binding energy in the range of 5 kcal/mol could be achieved by substitution with different functional groups. The hydrogen bond geometry between the isophtalic unit and the carbonyl oxygen atoms of the axle exhibited distances in the range of 2.1 to 2.4 Å for six contact points, which shows that not solely but to a large amount the circumstances in the investigated rotaxanes are governed by hydrogen bonding. Moreover, the complex with the more flexible axle is usually more unsymmetrical than the one with the stiff axle. The opposite is observed for the experimentally investigated axle with the four phenyl stoppers. Furthermore, we considered an implicit continuum solvation model and found that the complex binding is weakened by approximately 10 kcal/mol, and hydrogen bonds are slightly shortened (by up to 0.2 Å).
本研究通过在轴内从单 C-C 键改变为双 C=C 键,考察了不同官能团取代和分子柔韧性的影响。因此,我们对几种 Leigh 型轮烷进行了静态量子化学计算,在色散校正密度泛函理论(DFT-D3)水平上进行计算。计算得到的晶体结构与实验 X 射线数据非常吻合。与刚性轴相比,柔性轴导致结合能更强,结合能增强 1-3 kcal/mol。通过用不同官能团取代,可以实现结合能在 5 kcal/mol 范围内的改变。苯二甲酸单元和轴羰基氧原子之间氢键的几何形状在六个接触点的范围内表现为 2.1 至 2.4 Å,这表明不仅而且在很大程度上,所研究的轮烷中的情况受氢键控制。此外,与刚性轴相比,柔性轴的复合物通常比刚性轴的复合物更不对称。对于用四个苯基止动器实验研究的轴,观察到相反的情况。此外,我们考虑了一个隐式连续溶剂化模型,发现复合物结合被削弱了约 10 kcal/mol,氢键略有缩短(最多 0.2 Å)。