Martí-Rujas Javier, Famulari Antonino
Dipartimento di Chimica, Materiali e Ingegneria Chimica "Giulio Natta", Politecnico di Milano, Via L. Mancinelli 7, 20131, Milan, Italy).
INSTM Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali, 50121, Florence, Italy.
Angew Chem Int Ed Engl. 2024 Aug 19;63(34):e202407626. doi: 10.1002/anie.202407626. Epub 2024 Jul 16.
Poly-[n]-catenanes (PCs) self-assembled of three-dimensional (3D) metal organic cages (MOCs) (hereafter referred to as PCs-MOCs) are a relatively new class of mechanically interlocked molecules (MIMs) that combine the properties of MOCs and polymers. The synthesis of PCs-MOCs is challenging because of the difficulties associated with interlocking MOCs, the occurrence of multiple weak supramolecular electrostatic interactions between cages, and the importance of solvent templating effects. The high density of mechanical bonds interlocking the MOCs endows the MOCs with mechanical and physical properties such as enhanced stability, responsive dynamic behavior and low solubility, which can unlock new functional properties. In this Minireview, we highlight the benefit of interlocking MOCs in the formation of PCs-MOCs structures as well as the synthetic approaches exploited in their preparation, from thermodynamic to kinetic methods, both in the solution and solid-states. Examples of PCs-MOCs self-assembled from various types of nanosized cages (i.e., tetrahedral, trigonal prismatic, octahedral and icosahedral) are described in this article, providing an overview of the research carried out in this area. The focus is on the structure-property relationship with examples of functional applications such as electron conductivity, X-ray attenuation, gas adsorption and molecular sensing. We believe that the structural and functional aspects of the reviewed PCs-MOCs will attract chemists in this research field with great potential as new functional materials in nanotechnological disciplines such as gas adsorption, sensing and photophysical properties such as X-ray attenuation or electron conductivity.
由三维(3D)金属有机笼(MOCs)自组装而成的聚[n]索烃(PCs)(以下简称PCs-MOCs)是一类相对较新的机械互锁分子(MIMs),它结合了MOCs和聚合物的特性。PCs-MOCs的合成具有挑战性,这是因为MOCs互锁存在困难、笼之间会出现多种弱的超分子静电相互作用以及溶剂模板效应的重要性。互锁MOCs的机械键高密度赋予了MOCs机械和物理性质,如增强的稳定性、响应性动态行为和低溶解性,这可以解锁新的功能特性。在这篇综述中,我们强调了在PCs-MOCs结构形成中互锁MOCs的益处以及在其制备中所采用的合成方法,从热力学方法到动力学方法,包括溶液和固态。本文描述了由各种类型的纳米尺寸笼(即四面体、三角棱柱体、八面体和二十面体)自组装而成的PCs-MOCs的实例,概述了该领域所开展的研究。重点是结构-性能关系以及功能应用实例,如电子传导性、X射线衰减、气体吸附和分子传感。我们相信,所综述的PCs-MOCs的结构和功能方面将吸引该研究领域的化学家,因为它们作为气体吸附、传感等纳米技术学科中的新型功能材料具有巨大潜力,以及具有X射线衰减或电子传导性等光物理性质。