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Broadband dielectric spectroscopy to validate architectural features in Type-A polymers: Revisiting the poly(glycidyl phenyl ether) case

机译:宽带介电光谱,用于验证类型 - 一种聚合物中的架构特征:重新探测聚(缩水甘油基苯基醚)案例

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摘要

Broadband dielectric spectroscopy (BDS) is a powerful technique that allows studying the molecular dynamics of materials containing polar entities. Among a vast set of different applications, BDS can be used as a complementary tool in polymer synthesis. In this work, we will show how BDS can be used to validate architectural features in Type-A polymers, those having a net dipole moment component along the chain contour. Specifically, we will focus on the evaluation of the dielectric relaxation of poly(glycidyl phenyl ether) (PGPE) samples designed and synthesized with a variety of topologies and regio-orders: linear regio-regular chains synthesized from monofunctional and bifunctional initiators, macrocyclic regio-regular chains, and linear and macrocyclic regio-irregular chains. Our study highlights the impact of using BDS as a complementary characterization technique for providing topological details of polymers, which are otherwise not possible with many traditional techniques (e.g., NMR and mass spectrometry).
机译:宽带介电光谱(BDS)是一种强大的技术,允许研究含有极地实体的材料的分子动力学。在大量的不同应用中,BD可以用作聚合物合成中的互补工具。在这项工作中,我们将展示BDS如何用于验证类型 - 一种聚合物中的架构特征,沿着链轮廓具有净偶极矩组件的架构特征。具体而言,我们将专注于评估聚(缩水甘油苯基醚)(PGPE)样品的介电弛豫(PGPE)样品,这些样品与各种拓扑和Regio序列:由单官能和双官能引发剂合成的线性调节常规链,宏观义 - 分泌链,线性和宏环refio - 不规则链。我们的研究强调了使用BDS作为提供聚合物拓扑细节的互补特征技术的影响,否则不可能具有许多传统技术(例如,NMR和质谱)。

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