Li Hongbo, Jiang Fengrui, Zhang Guohua, Li Bao, Wu Lixin
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, China.
Dalton Trans. 2019 Apr 16;48(16):5168-5175. doi: 10.1039/c8dt05146a.
Herein, a mono-lacunary Keggin-type polyoxometalate (POM), [SiW11O39]8-, grafted with an azobenzene group through Sn ion bridging was prepared, and the formed organic-inorganic hybrid cluster was characterized via elemental analysis, NMR, TGA, and IR techniques. A vesicular structure of the hybrid cluster assembly in aqueous media was observed in the TEM image, and it dissociated in the presence of α-/β-, γ-cyclodextrins (α-/β-, γ-CDs); this dissociation was driven by the host-guest interactions. The monodispersed inclusion complex further reassembled into smaller micelles under irradiation with 365 nm light, and this transformation was reversibly controlled by alternating the irradiation with 450 nm light. Moreover, in the case of the POM-Azo/β-CD system, reassembly from the monodispersed state to the vesicular state was achieved by the addition of a competitive guest molecule. Thus, the reversible host-guest interactions combining reversible photoisomerization of the azobenzene group provided multiple ways to modulate the assembly and disassembly of the POM hybrid as well as the changes between different assemblies. The present study inspires the potential use of these kind of hybrid POMs in enhanced catalytic reactions and recycling.
在此,制备了一种通过锡离子桥接接枝偶氮苯基团的单缺位Keggin型多金属氧酸盐(POM)[SiW11O39]8-,并通过元素分析、核磁共振、热重分析和红外技术对形成的有机-无机杂化簇进行了表征。在透射电子显微镜图像中观察到杂化簇组装体在水性介质中的囊泡结构,并且它在α-/β-、γ-环糊精(α-/β-、γ-CD)存在下解离;这种解离是由主客体相互作用驱动的。单分散包合物在365nm光照射下进一步重新组装成较小的胶束,并且通过交替用450nm光照射可逆地控制这种转变。此外,在POM-Azo/β-CD体系的情况下,通过添加竞争性客体分子实现了从单分散状态到囊泡状态的重新组装。因此,结合偶氮苯基团可逆光异构化的可逆主客体相互作用提供了多种方式来调节POM杂化物的组装和解组装以及不同组装之间的变化。本研究激发了这类杂化POM在增强催化反应和循环利用方面的潜在应用。