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Stereodynamic insight into the thermal history effects on poly(vinyl chloride) calorimetric sub-glass and glass transitions as a fragile glass model

机译:对聚(氯乙烯)热历史影响的立体动力学洞察热历史对热血液玻璃和玻璃过渡作为脆弱的玻璃模型

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摘要

The dynamic thermal history impact of poly(vinyl chloride) (PVC) has been explored for a wide range of pre-cooling rates, from 1 to 30 degrees C min(-1). A first macroscopic insight into the dynamic thermal history influence has been highlighted through a decrease in the apparent activation energy (Eapp) in the first stage of the glass transition. The overall glass transition Eapp surface was successfully modeled in a polynomial fashion regarding the pre-cooling range. Raman scattering was used to associate the Eapp variations along the glass transition conversion with the stereochemistry evolution during the polymeric relaxation. Herein, the selection of atactic PVC as the polymer model permits us to monitor the glassy polymer segment stereodynamics during the heating ramp through the C-Cl stretching. The intermolecular H-Cl dipole interactions, as well as intramolecular conformational reorganizations among syndiotactic, isotactic and heterotactic polymer sequences, have been associated with non-cooperative and cooperative motions, i.e. the beta- and alpha-process, respectively. The fruitful comparison of the two extreme values of the pre-cooling rates permits us to propose a thermokinetic scenario that explains the occurrence, intensity, and inter-dependence of beta- and alpha-processes in the glassy state and during the glass transition. This scenario could potentially be generalized to all the other polymeric glass-formers.
机译:已经探讨了聚(氯乙烯)(PVC)的动态热历史影响,用于广泛的预冷却速率,从1至30摄氏度(-1)。通过玻璃化转变的第一阶段的表观激活能量(EAPP)的降低,突出了对动态热历史影响的第一种宏观洞察。整体玻璃化转变EAPP表面以多项式方式成功建模关于预冷却范围。拉曼散射用于将EAPP变化与聚合物弛豫期间的立体化学展开相关联。这里,作为聚合物模型的atactic pVC的选择允许我们在加热斜坡期间通过C-C1拉伸来监测玻璃状聚合物段立体动力学。分子间H-Cl偶极相互作用以及间同立构致胞外和异型聚合物序列中的分子内构象重组已经与非协作和合作运动,即β-和α-过程分别有关。预冷却率的两个极端值的富有成效的比较允许我们提出了一种热幂级学场景,其解释了玻璃状态和玻璃化转变期间β-和α-过程的发生,强度和依赖性的发生。这种情况可能是普遍的全部聚合物玻璃制剂。

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    Univ Guelph Dept Plant Agr Bioprod Discovery &

    Dev Ctr Crop Sci Bldg Guelph ON N1G 2W1 Canada;

    Univ Guelph Dept Plant Agr Bioprod Discovery &

    Dev Ctr Crop Sci Bldg Guelph ON N1G 2W1 Canada;

    Univ Guelph Dept Plant Agr Bioprod Discovery &

    Dev Ctr Crop Sci Bldg Guelph ON N1G 2W1 Canada;

    Univ Guelph Dept Plant Agr Bioprod Discovery &

    Dev Ctr Crop Sci Bldg Guelph ON N1G 2W1 Canada;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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