Bettens Tom, Alonso Mercedes, Geerlings Paul, De Proft Frank
Eenheid Algemene Chemie (ALGC), Vrije Universiteit Brussel (VUB) Pleinlaan 2 1050 Brussels Belgium
Chem Sci. 2019 Dec 23;11(5):1431-1439. doi: 10.1039/c9sc04507d.
In our effort to implement the mechanical force used to activate single molecules in mechanochemistry in the context of conceptual density functional theory, we present a theoretical investigation of strained alkynes for rationalizing structural trends as well as the reactivity of cyclic alkynes that are of great importance in click reactions. The strain on the triple bond in cyclic alkynes is modeled by angular constraints in a 2-butyne fragment and the corresponding bending force is calculated by means of an extended COGEF (constrained geometries simulate external forces) model. In general, the force required to bend the triple bond is smaller with electron-withdrawing groups on the propargylic C-atom, which elegantly results in smaller angles around the triple bond in cyclic alkynes with such substitution pattern. By means of conceptual DFT descriptors, the electrophilic and nucleophilic character of bent triple bonds was investigated revealing moderate activation for small distortions from the linear geometry (0° to 15°) and a drastically more reactive π-space if the triple bond is bent further. This analysis of the intrinsic reactivity of the triple bond is in line with experimental observations, explaining the reactive nature of cyclooctynes and cycloheptynes, whereas larger cyclic systems do not drastically activate the triple bond.
在我们尝试在概念密度泛函理论的背景下实现用于机械化学中激活单分子的机械力的过程中,我们对 strained 炔烃进行了理论研究,以合理化结构趋势以及在点击反应中非常重要的环状炔烃的反应性。环状炔烃中三键的应变通过 2-丁炔片段中的角度约束来建模,并且通过扩展的 COGEF(约束几何模拟外力)模型计算相应的弯曲力。一般来说,当炔丙基 C 原子上有吸电子基团时,弯曲三键所需的力较小,这巧妙地导致具有这种取代模式的环状炔烃中三键周围的角度更小。通过概念性 DFT 描述符,研究了弯曲三键的亲电和亲核特性,结果表明,对于从线性几何结构(0°至 15°)的小变形,有适度的活化作用,而如果三键进一步弯曲,则 π 空间的反应性会大幅提高。对三键固有反应性的这种分析与实验观察结果一致,解释了环辛炔和环庚炔的反应性质,而较大的环状体系不会显著激活三键。