Au-Yeung Ho Yu, Yee Chi-Chung, Hung Ng Antony Wing, Hu Keling
Department of Chemistry , The University of Hong Kong , Pokfulam Road , Hong Kong , P. R. China.
Inorg Chem. 2018 Apr 2;57(7):3475-3485. doi: 10.1021/acs.inorgchem.7b02523. Epub 2017 Dec 11.
As a major class of mechanically interlocked molecules, not only are catenanes topologically intriguing targets that challenge the chemical synthesis to the efficient formation of mechanical bonds, but also the mechanical properties arising from the topology offer unique and attractive features for the development of novel functional molecular materials. Despite advancements in templated methods for different types of interlocked architectures, [ n]catenane possessing multiple numbers of interlocked macrocycles still remains a difficult synthetic target with very few reported examples. If the unique mechanical properties of catenanes are to be fully exploited, reliable, controllable, and efficient strategies for accessing [ n]catenanes will be necessary. In this Viewpoint, challenges, considerations, and strategies to [ n]catenanes are discussed.
作为一类主要的机械互锁分子,索烃不仅是拓扑结构引人入胜的目标,对化学合成形成机械键的效率提出了挑战,而且拓扑结构产生的机械性能为新型功能分子材料的开发提供了独特且有吸引力的特性。尽管针对不同类型互锁结构的模板化方法取得了进展,但具有多个互锁大环的[n]索烃仍然是一个合成困难的目标,报道的实例很少。如果要充分利用索烃独特的机械性能,就需要可靠、可控且高效的策略来合成[n]索烃。在这篇观点文章中,将讨论合成[n]索烃所面临的挑战、需要考虑的因素和策略。