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Inaugural Article: Electrochemically addressable trisradical rotaxanes organized within a metal–organic framework

机译:开篇文章:金属有机框架内可电化学寻址的三自由基轮烷

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摘要

The organization of trisradical rotaxanes within the channels of a Zr6-based metal–organic framework (NU-1000) has been achieved postsynthetically by solvent-assisted ligand incorporation. Robust ZrIV–carboxylate bonds are forged between the Zr clusters of NU-1000 and carboxylic acid groups of rotaxane precursors (semirotaxanes) as part of this building block replacement strategy. Ultraviolet–visible–near-infrared (UV-Vis-NIR), electron paramagnetic resonance (EPR), and 1H nuclear magnetic resonance (NMR) spectroscopies all confirm the capture of redox-active rotaxanes within the mesoscale hexagonal channels of NU-1000. Cyclic voltammetry measurements performed on electroactive thin films of the resulting material indicate that redox-active viologen subunits located on the rotaxane components can be accessed electrochemically in the solid state. In contradistinction to previous methods, this strategy for the incorporation of mechanically interlocked molecules within porous materials circumvents the need for de novo synthesis of a metal–organic framework, making it a particularly convenient approach for the design and creation of solid-state molecular switches and machines. The results presented here provide proof-of-concept for the application of postsynthetic transformations in the integration of dynamic molecular machines with robust porous frameworks.
机译:在Zr6基金属有机骨架(NU-1000)的通道内三自由基轮烷的组织是通过溶剂辅助配体的合成而在后期合成的。作为此构建单元替换策略的一部分,在NU-1000的Zr簇与轮烷前体(半乳糖烷)的羧酸基团之间建立了坚固的Zr IV -羧酸酯键。紫外-可见-近红外(UV-Vis-NIR),电子顺磁共振(EPR)和 1 H核磁共振(NMR)光谱都证实了氧化还原活性轮烷的捕获。 NU-1000的中尺度六角形通道。对所得材料的电活性薄膜进行的循环伏安法测量表明,位于轮烷组分上的氧化还原活性紫精亚基可以固态电化学方式进入。与以前的方法不同,这种将机械互锁分子结合到多孔材料中的策略避免了从头合成金属-有机骨架的需要,这使其成为设计和创建固态分子开关的特别方便的方法。机器。此处提供的结果为在动态分子机器与坚固的多孔框架整合中应用后合成转化提供了概念验证。

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