Department of Chemistry, Imperial College London, South Kensington, London, SW7 2AZ, UK.
Nanoscale. 2017 Apr 20;9(16):5280-5298. doi: 10.1039/c7nr00703e.
We define a nomenclature for the classification of porous organic cage molecules, enumerating the 20 most probable topologies, 12 of which have been synthetically realised to date. We then discuss the computational challenges encountered when trying to predict the most likely topological outcomes from dynamic covalent chemistry (DCC) reactions of organic building blocks. This allows us to explore the extent to which comparing the internal energies of possible reaction outcomes is successful in predicting the topology for a series of 10 different building block combinations.
我们为多孔有机笼分子的分类定义了一个命名法,列举了最可能的 20 种拓扑结构,其中 12 种迄今为止已经被合成实现。然后,我们讨论了在尝试从有机构筑块的动态共价化学(DCC)反应中预测最可能的拓扑结果时遇到的计算挑战。这使我们能够探讨在比较可能的反应结果的内能在多大程度上成功地预测一系列 10 种不同构筑块组合的拓扑结构。