超分子组装的动力学特征和标度

Linkun Cai, Panchao Yin
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引用次数: 0

摘要

我们简要概述了目前对超分子组装动力学的研究,重点是将宽带介电光谱(BDS)与不同技术相结合。介电方法在探测超结构的动力学特征和标度方面具有显著优势。我们总结了描述超分子动力学的各种机制,这些机制可以产生由超分子缔合控制的弛豫,慢于玻璃化转变相关的结构弛豫。接下来,我们还讨论了相分离超分子组装体和纳米约束下超分子组装体的弛豫动力学,以控制额外的宏观性能。这种观点强调了超分子组装体的弛豫反应在某种程度上是普遍的。它不一定取决于缔合物的化学性质,但可以反映由其分子结构决定的超材料的行为。
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The dynamical signature and scaling of supramolecular assemblies

We present a brief overview of current investigations on the dynamics of supramolecular assemblies, with the focus on applying broadband dielectric spectroscopy (BDS) combined with different techniques. The dielectric methods have significant advantages in probing the dynamical signature and scaling of supra-structures. We summarize various mechanisms describing supramolecular dynamics, which could produce a relaxation governed by supramolecular association slower than the glass-transition-related structural relaxation. Next, we also discuss the relaxation dynamics in phase-separated supramolecular assemblies and supramolecular assembly under nanoconfinement, for controlling bonus macroscopic performances. This perspective emphasizes the idea that the relaxational response of supramolecular assemblies is generic to some extent. It does not necessarily depend on the chemistry of associations, but could reflect supra-materials’ behaviors determined by their molecular architectures.

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