Department of Chemistry and Centre for Materials Discovery, University of Liverpool, Liverpool, L69 7ZD, UK.
J Am Chem Soc. 2013 Jun 26;135(25):9307-10. doi: 10.1021/ja404253j. Epub 2013 Jun 12.
We synthesize a series of imine cage molecules where increasing the chain length of the alkanediamine precursor results in an odd-even alternation between [2 + 3] and [4 + 6] cage macrocycles. A computational procedure is developed to predict the thermodynamically preferred product and the lowest energy conformer, hence rationalizing the observed alternation and the 3D cage structures, based on knowledge of the precursors alone.
我们合成了一系列亚胺笼分子,其中增加烷二胺前体的链长会导致[2+3]和[4+6]笼大环之间出现奇偶交替。开发了一种计算程序来预测热力学上优先的产物和最低能量构象,从而仅基于对前体的了解来合理化观察到的交替和 3D 笼结构。