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Redox-switchable breathing behavior in tetrathiafulvalene-based metal–organic frameworks

机译:基于四硫富瓦烯的金属-有机框架中的氧化还原可切换呼吸行为

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Metal–organic frameworks (MOFs) that respond to external stimuli such as guest molecules, temperature, or redox conditions are highly desirable. Herein, we coupled redox-switchable properties with breathing behavior induced by guest molecules in a single framework. Guided by topology, two flexible isomeric MOFs, compounds 1 and 2, with a formula of In(Me2NH2)(TTFTB), were constructed via a combination of [In(COO)4]? metal nodes and tetratopic tetrathiafulvalene-based linkers (TTFTB). The two compounds show different breathing behaviors upon the introduction of N2. Single-crystal X-ray diffraction, accompanied by molecular simulations, reveals that the breathing mechanism of 1 involves the bending of metal–ligand bonds and the sliding of interpenetrated frameworks, while 2 undergoes simple distortion of linkers. Reversible oxidation and reduction of TTF moieties changes the linker flexibility, which in turn switches the breathing behavior of 2. The redox-switchable breathing behavior can potentially be applied to the design of stimuli-responsive MOFs.
机译:非常需要对外部刺激(例如客体分子,温度或氧化还原条件)作出反应的金属有机框架(MOF)。在本文中,我们将氧化还原可切换特性与客体分子在单个框架中诱导的呼吸行为结合在一起。在拓扑学的指导下,通过[In(COO)4]的组合构建了两个分子式为In(Me2NH2)(TTFTB)的柔性异构MOF,化合物1和2。金属节点和基于四硫联富瓦烯的四连接基(TTFTB)。引入N2后,两种化合物显示出不同的呼吸行为。单晶X射线衍射和分子模拟表明,呼吸机制1涉及金属-配体键的弯曲和互穿框架的滑动,而呼吸机制2则涉及连接子的简单变形。 TTF部分的可逆氧化和还原改变了接头的柔性,进而改变了2的呼吸行为。氧化还原可切换的呼吸行为可潜在地应用于刺激响应型MOF的设计。

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