Chen Yixin, Lei Ye, Tong Lu, Li Hao
Department of Chemistry, Zhejiang University, Hangzhou, 310027, P. R. China.
ZJU-Hangzhou Global Scientific and Technological Innovation Center, Hangzhou, 311215, P. R. China.
Chemistry. 2022 Jan 3;28(1):e202102910. doi: 10.1002/chem.202102910. Epub 2021 Oct 25.
The formation of imine bond is reversible. This feature has been taken advantage of by chemists for accomplishing high yielding self-assembly. On the other hand, it also jeopardizes the intrinsic stability of these self-assembled products. However, some recent discoveries demonstrate that some of these imine bond containing molecules could be rather stable or kinetically inert. A deep investigation indicated that such enhanced stability results from, at least partially, multivalence. Such results also inspire chemists to use imine condensation for self-assembly in water, a solvent that is considered not compatible with imine bond for a long time.
亚胺键的形成是可逆的。化学家利用这一特性实现了高产率的自组装。另一方面,这也危及了这些自组装产物的内在稳定性。然而,最近的一些发现表明,一些含有亚胺键的分子可能相当稳定或具有动力学惰性。深入研究表明,这种增强的稳定性至少部分源于多价性。这些结果也激发了化学家在水中使用亚胺缩合进行自组装,而水长期以来被认为与亚胺键不相容。