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Mechanochemistry with Metallosupramolecular Polymers

机译:金属超高分子聚合物的机械化学

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摘要

The transduction of mechanical force into useful chemical reactions is an emerging design approach to impart soft materials with new functions. Here, we report that mechanochemical transductions can be achieved in metallosupramolecular polymers. We show that both reversible and irreversible reactions are possible and useful to create mechanically responsive materials that display new functions. The metallopolymer studied was a cross-linked network assembled from a europium salt and a telechelic poly(ethylene-co-butylene) with 2,6-bis(1'-methyl-benzimidazolyl)pyridine (Mebip) ligands at the termini. The Eu~(3+) complexes serve both as mechanically responsive binding motifs and as built-in optical probes that can monitor the extent of (dis)assembly due to their characteristic photoluminescent properties. Indeed, dose-dependent and reversible metal-ligand dissociation occurs upon exposure to ultrasound in solution. The absence of ultrasound-induced dissociation of a low-molecular weight model complex and in-depth studies of temperature effects confirm that the dissociation is indeed the result of mechanical activation. The influence of the strength of the metal-ligand interactions on the mechanically induced dissociation was also explored. Metallopolymers in which the Mebip ligands were substituted with more strongly coordinating dipicolinate (dpa) ligands do not dissociate upon exposure to ultrasound. Finally, we show that mechanochemical transduction in metallosupramolecular polymers is also possible in the solid state. We demonstrate mending of damaged objects through ultrasound as well as mechanochromic behavior based on metal-exchange reactions in metallopolymers imbibed with an auxiliary metal salt.
机译:将机械力转化为有用的化学反应是一种新兴的设计方法,旨在赋予软材料新的功能。在这里,我们报告可以在金属超分子聚合物中实现机械化学转导。我们表明,可逆和不可逆反应都是可能的,并且对创建显示新功能的机械响应材料很有用。所研究的金属聚合物是由from盐和在末端带有2,6-双(1'-甲基-苯并咪唑基)吡啶(Mebip)配体的远螯聚(乙烯-共-丁烯)组装而成的交联网络。 Eu〜(3+)配合物既可以用作机械响应结合基序,也可以用作内置光学探针,由于其独特的光致发光特性,它们可以监测(分解)组装的程度。实际上,当暴露于溶液中的超声时,发生剂量依赖性和可逆的金属配体解离。缺乏超声诱导的低分子量模型复合物的解离和对温度影响的深入研究证实,该解离确实是机械活化的结果。还探讨了金属-配体相互作用的强度对机械诱导的离解的影响。 Mebip配体被更强配位的吡啶二酸酯(dpa)配体取代的金属聚合物在暴露于超声波时不会解离。最后,我们证明了固态金属超分子聚合物的机械化学转导也是可能的。我们展示了通过超声修复损伤的物体以及基于吸收了辅助金属盐的金属聚合物中的金属交换反应的机械变色行为。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2014年第29期|10493-10498|共6页
  • 作者单位

    Adolphe Merkle Institute, University of Fribourg, CH-1700 Fribourg, Switzerland;

    Adolphe Merkle Institute, University of Fribourg, CH-1700 Fribourg, Switzerland;

    Adolphe Merkle Institute, University of Fribourg, CH-1700 Fribourg, Switzerland;

    Adolphe Merkle Institute, University of Fribourg, CH-1700 Fribourg, Switzerland;

    Adolphe Merkle Institute, University of Fribourg, CH-1700 Fribourg, Switzerland;

    Adolphe Merkle Institute, University of Fribourg, CH-1700 Fribourg, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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