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在多响应超分子凝胶中创建基于配位的空腔。

Creating coordination-based cavities in a multiresponsive supramolecular gel.

作者信息

Wei Shi-Chao, Pan Mei, Fan Yuan-Zhong, Liu Haoliang, Zhang Jianyong, Su Cheng-Yong

机构信息

MOE Laboratory of Bioinorganic and Synthetic Chemistry, State Key Laboratory of Optoelectronic Materials and Technologies, Lehn Institute of Functional Materials, School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275 (China).

出版信息

Chemistry. 2015 May 11;21(20):7418-27. doi: 10.1002/chem.201406517. Epub 2015 Apr 15.

Abstract

Creating cavities in varying levels, from molecular containers to macroscopic materials of porosity, have long been motivated for biomimetic or practical applications. Herein, we report an assembly approach to multiresponsive supramolecular gels by integrating photochromic metal-organic cages as predefined building units into the supramolecular gel skeleton, providing a new approach to create cavities in gels. Formation of discrete O-Pd2 L4 cages is driven by coordination between Pd(2+) and a photochromic dithienylethene bispyridine ligand (O-PyFDTE). In the presence of suitable solvents (DMSO or MeCN/DMSO), the O-Pd2 L4 cage molecules aggregate to form nanoparticles, which are further interconnected through supramolecular interactions to form a three-dimensional (3D) gel matrix to trap a large amount of solvent molecules. Light-induced phase and structural transformations readily occur owing to the reversible photochromic open-ring/closed-ring isomeric conversion of the cage units upon UV/visible light radiation. Furthermore, such Pd2 L4 cage-based gels show multiple reversible gel-solution transitions when thermal-, photo-, or mechanical stimuli are applied. Such supramolecular gels consisting of porous molecules may be developed as a new type of porous materials with different features from porous solids.

摘要

从分子容器到宏观多孔材料,创建不同层次的孔洞长期以来一直受到仿生或实际应用的推动。在此,我们报告了一种通过将光致变色金属有机笼作为预定义的构建单元整合到超分子凝胶骨架中来制备多响应超分子凝胶的组装方法,为在凝胶中创建孔洞提供了一种新方法。离散的O-Pd2 L4笼的形成是由Pd(2+)与光致变色二噻吩乙烯双吡啶配体(O-PyFDTE)之间的配位驱动的。在合适的溶剂(DMSO或MeCN/DMSO)存在下,O-Pd2 L4笼分子聚集形成纳米颗粒,这些纳米颗粒通过超分子相互作用进一步相互连接形成三维(3D)凝胶基质,以捕获大量溶剂分子。由于笼单元在紫外/可见光辐射下的可逆光致变色开环/闭环异构化转变,光诱导的相和结构转变很容易发生。此外,这种基于Pd2 L4笼的凝胶在施加热、光或机械刺激时表现出多次可逆的凝胶-溶液转变。这种由多孔分子组成的超分子凝胶可能被开发成为一种具有与多孔固体不同特性的新型多孔材料。

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