Nandi Mandira, Bej Somnath, Jana Tarun, Ghosh Pradyut
School of Chemical Sciences, Indian Association for the Cultivation of Science, Kolkata 700032, India.
Chem Commun (Camb). 2023 Dec 14;59(100):14776-14790. doi: 10.1039/d3cc03778a.
Over the last few decades, research on mechanically interlocked molecules has significantly evolved owing to their unique structural features and interesting properties. A substantial percentage of the reported works have focused on the synthetic strategies, leading to the preparation of functional MIMs for their applications in the chemical, materials, and biomedical sciences. Importantly, various macrocyclic wheels with specific heteroditopicity (including phenanthroline, amide, amine, oxy-ether, isophthalamide, calixarene and triazole) and threading axles (bipyridine, phenanthroline, pyridinium, triazolium, ) have been designed to synthesize targeted multifunctional mononuclear/multinuclear pseudorotaxanes, rotaxanes and catenanes. The structural uniqueness of these interlocked systems is advantageous owing to the presence of mechanical bonds with specific three-dimensional cavities. Furthermore, their multi-functionalities and preorganised structural entities exhibit a high potential for versatile applications, like switching, shuttling, dynamic properties, recognition and sensing. In this feature article, we describe some of the most recent advances in the construction and chemical behaviour of a new generation of interlocked molecules, primarily focusing on heteroditopic wheels and their applications in different directions of the modern research area. Furthermore, we outline the future prospects and significant perspectives of the new generation heteroditopic wheel based interlocked molecules in different emerging areas of science.
在过去几十年中,由于其独特的结构特征和有趣的性质,对机械互锁分子的研究有了显著进展。已报道的研究工作中有很大一部分集中在合成策略上,旨在制备功能性机械互锁分子,用于化学、材料和生物医学科学领域。重要的是,人们设计了各种具有特定异双位性的大环轮(包括菲咯啉、酰胺、胺、氧醚、间苯二甲酰胺、杯芳烃和三唑)和穿线轴(联吡啶、菲咯啉、吡啶鎓、三唑鎓),以合成目标多功能单核/多核准轮烷、轮烷和索烃。这些互锁体系的结构独特性因存在具有特定三维空腔的机械键而具有优势。此外,它们的多功能性和预组织的结构实体在诸如开关、穿梭、动态性质、识别和传感等多种应用方面具有很高的潜力。在这篇专题文章中,我们描述了新一代互锁分子在构建和化学行为方面的一些最新进展,主要关注异双位轮及其在现代研究领域不同方向的应用。此外,我们概述了基于新一代异双位轮的互锁分子在不同新兴科学领域的未来前景和重要观点。