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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Self-healing mechanism of metallopolymers investigated by QM/MM simulations and Raman spectroscopy
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Self-healing mechanism of metallopolymers investigated by QM/MM simulations and Raman spectroscopy

机译:QM / MM模拟研究和拉曼光谱研究的金属聚合体的自愈合机理

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摘要

The thermally induced self-healing mechanisms in metallopolymers based on bisterpyridine complexes of iron(II) sulfate and cadmium(II) bromide, respectively, were studied by means of combined quantum mechanical/molecular mechanical (QM/MM) simulations and Raman spectroscopy. Two possible healing schemes, one based on a decomplexation of the cross-linking complexes and a second one relying on the dissociation of ionic clusters, have been addressed. Temperature-dependent Raman spectroscopy displayed bathochromic shifts of the Raman intensity pattern upon heating. QM/MM simulations on the polymer models assign these alterations to a partial decomplexation of the metal terpyridine complexes, i.e. signals originating from free terpyridine ligands increase upon heating. Thus, a healing mechanisms based on partial decomplexation of the cross-linking complexes is suggested. The possibility that the dissociation of ionic clusters, which are assumed to be present in this class of self-healing polymers, is also responsible for the self-healing process was investigated as well. However, such calculations on model clusters revealed relatively strong binding of the clusters, which renders reversible cluster breaking and reformation upon temperature cycling in the range up to 100 °C unlikely.
机译:通过组合量子机械/分子机械(QM / MM)模拟和拉曼光谱,研究了基于铁(II)硫酸铁和镉(II)溴化镉的硫酸铁(II)硫酸铁和镉(II)溴化镉的金属聚合物中的热愈合机制。已经解决了两种可能的愈合方案,一种基于交联复合物的解用和依赖于离子簇的解离的第二个可以的愈合方案。温度依赖性拉曼光谱显示在加热时显示拉曼强度图案的碱基变化。聚合物模型上的QM / mm模拟将这些改变分配给金属萜烯配合物的部分解链,即源自加热时的自由吡啶配体的信号。因此,提出了基于交联复合物的部分解链的愈合机制。假设存在于这种自愈合聚合物中的离子簇的解离的可能性也负责自愈合过程。然而,在模型集群上的这种计算揭示了簇的相对强烈的结合,这使得可逆簇在温度循环在范围内不太可能的温度循环和重整。

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    Institute for Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany;

    Institute for Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany;

    Faculty of Applied Physics and Mathematics Gdansk University of Technology Narutowicza 11/12 80233 Gdansk Poland;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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