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首页> 外文期刊>Angewandte Chemie >Thermally Induced Intra-Carboxyl Proton Shuttle in a Molecular Rack-and-Pinion Cascade Achieving Macroscopic Crystal Deformation
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Thermally Induced Intra-Carboxyl Proton Shuttle in a Molecular Rack-and-Pinion Cascade Achieving Macroscopic Crystal Deformation

机译:在分子架和小齿轮级联中实现宏观晶体变形的热诱导羧基内质子穿梭。

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摘要

Proton transport via dynamic molecules is ubiquitous in chemistry and biology. However, its use as a switching mechanism for properties in functional molecular assemblies is far less common. In this study, we demonstrate how an intra-carboxyl proton shuttle can be generated in a molecular assembly akin to a rack-and-pinion cascade via a thermally induced single-crystal-to-single-crystal phase transition. In a triply interpenetrated supramolecular organic framework (SOF), a 4,4'-azopyridine (azpy) molecule connects to two biphenyl-3,3', 5,5'-tetracarboxylic acid (H4BPTC) molecules to form a functional molecular system with switchable mechanical properties. A temperature change reversibly triggers a molecular movement akin to a rack-and-pinion cascade, which mainly involves 1) an intra-carboxyl proton shuttle coupled with tilting of the azo molecules and azo pedal motion and 2) H4BPTC translation. Moreover, both the molecular motions are collective, and being propagated across the entire framework, leading to a macroscopic crystal expansion and contraction.
机译:经由动态分子的质子运输在化学和生物学中无处不在。然而,将其用作功能分子组装中的性质的转换机制的用途远远不那么普遍。在这项研究中,我们演示了如何通过热诱导的单晶到单晶的相变,在类似于齿条齿轮级联的分子组件中生成羧基内质子穿梭。在三重互穿的超分子有机骨架(SOF)中,4,4'-偶氮吡啶(azpy)分子与两个联苯3,3',5,5'-四羧酸(H4BPTC)分子连接,形成具有可切换的机械性能。温度变化可逆地触发类似于齿轮齿条级联的分子运动,这主要涉及1)羧基内质子穿梭以及偶氮分子的倾斜和偶氮踏板运动以及2)H4BPTC的平移。而且,这两种分子运动都是集体的,并在整个框架中传播,从而导致宏观晶体的膨胀和收缩。

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