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铜连接轮烷用于构建具有可控货物输送的光响应金属有机骨架。

Copper-Linked Rotaxanes for the Building of Photoresponsive Metal Organic Frameworks with Controlled Cargo Delivery.

机构信息

Departamento de Quimica Organica, Facultad de Quimica, Regional Campus of International Excellence "Campus Mare Nostrum", Universidad de Murcia, Murcia E-30100, Spain.

Seccion Universitaria de Instrumentacion Cientifica (SUIC), Area Científica y Tecnica de Investigacion (ACTI), Universidad de Murcia, Murcia E-30100, Spain.

出版信息

J Am Chem Soc. 2020 Aug 5;142(31):13442-13449. doi: 10.1021/jacs.0c04477. Epub 2020 Jul 22.

Abstract

We have prepared a photoresponsive metal-organic framework by using an amide-based [2]rotaxane as linker and copper(II) ions as metal nodes. The interlocked linker was obtained by the hydrogen bond-directed approach employing a fumaramide thread as template of the macrocyclic component, this latter incorporating two carboxyl groups. Single crystal X-ray diffraction analysis of the metal-organic framework, prepared under solvothermal conditions, showed the formation of stacked 2D rhombohedral grids forming channels decorated with the interlocked alkenyl threads. A series of metal-organic frameworks differing in the olefin ratio were prepared either by the previous isomerization of the linker or by postirradiation of the reticulated materials. By dynamic solid state H NMR measurements, using deuterium-labeled materials, we proved that the geometry of the olefinic axis of the interlocked struts determined the obtention of materials with different independent local dynamics as a result of the strength of the intercomponent noncovalent interactions. Moreover, the usefulness of these novel copper-rotaxane materials as molecular dosing containers has also been assayed by the diffusion and photorelease of -benzoquinone, evaluated in different solvents and temperatures.

摘要

我们使用酰胺基[2]轮烷作为连接体和铜(II)离子作为金属节点,制备了一种光响应的金属有机骨架。互锁连接体是通过氢键导向方法获得的,使用富马酰胺作为大环组分的模板,后者包含两个羧基。在溶剂热条件下制备的金属有机骨架的单晶 X 射线衍射分析表明,形成了堆叠的二维菱形网格,形成了带有互锁烯基线的通道。通过先前的连接体异构化或网状材料的辐照后,制备了一系列不同烯烃比的金属有机骨架。通过使用氘标记材料的动态固态 H NMR 测量,我们证明了互锁支柱的烯烃轴的几何形状决定了由于组件间非共价相互作用的强度,获得了具有不同独立局部动力学的材料。此外,还通过在不同溶剂和温度下扩散和光释放 -苯醌评估了这些新型铜-轮烷材料作为分子计量容器的用途。

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