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Photoinduced transformations of stiff-stilbene-based discrete metallacycles to metallosupramolecular polymers

机译:刚性二苯乙烯基离散金属环向金属超分子聚合物的光诱导转变

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摘要

Control over structural transformations in supramolecular entities by external stimuli is critical for the development of adaptable and functional soft materials. Herein, we have designed and synthesized a dipyridyl donor containing a central Z-configured stiff-stilbene unit that self-assembles in the presence of two 180° di-Pt(II) acceptors to produce size-controllable discrete organoplatinum(II) metallacycles with high efficiency by means of the directional-bonding approach. These discrete metallacycles undergo transformation into extended metallosupramolecular polymers upon the conformational switching of the dipyridyl ligand from Z-configured (0°) to E-configured (180°) when photoirradiated. This transformation is accompanied by interesting morphological changes at nanoscopic length scales. The discrete metallacycles aggregate to spherical nanoparticles that evolve into long nanofibers upon polymer formation. These fibers can be reversibly converted to cyclic oligomers by changing the wavelength of irradiation, which reintroduces Z-configured building blocks owing to the reversible nature of stiff-stilbene photoisomerization. The design strategy defined here represents a novel self-assembly pathway to deliver advanced supramolecular assemblies by means of photocontrol.
机译:通过外部刺激控制超分子实体中的结构转变对于开发适应性和功能性软材料至关重要。在这里,我们已经设计并合成了一个含中央Z-构型的硬-苯乙烯单元的二吡啶基供体,该单元在两个180°di-Pt(II)受体的存在下自组装,以生成具有尺寸可控的离散有机铂(II)金属环通过定向键合方法实现高效率。当二吡啶基配体在光辐照下从Z构型(0°)转变为E构型(180°)时,这些离散的金属环化合物经历转变成延伸的金属超分子聚合物。这种转变伴随着纳米长度尺度上有趣的形态变化。离散的金属环化合物聚集成球形纳米颗粒,该球形纳米颗粒在形成聚合物后演变为长纳米纤维。通过改变辐照波长,这些纤维可以可逆地转化为环状低聚物,由于硬二苯乙烯光异构化的可逆性,它可以重新引入Z构筑的结构单元。此处定义的设计策略代表了一种新颖的自组装途径,可通过光控来提供先进的超分子组装。

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