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首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Probe translational and rotational diffusion in polymers near T-g: Roles of probe size, shape, and secondary bonding in deviations from Debye-Stokes-Einstein scaling
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Probe translational and rotational diffusion in polymers near T-g: Roles of probe size, shape, and secondary bonding in deviations from Debye-Stokes-Einstein scaling

机译:T-g附近聚合物中的探针平移和旋转扩散:探针尺寸,形状和次级键在偏离Debye-Stokes-Einstein标度的过程中的作用

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摘要

Rotational and translational dynamics of a variety of probes are compared in several polymers near the glass transition temperature, T-g. Second harmonic generation was used to measure the rotational relaxation distribution and average rotational relaxation time, [tau], and fluorescence nonradiative energy transfer was used to measure D-trans, the translational diffusion coefficient. D-trans is affected greatly by probe size and shape, typically with a temperature dependence in the rubbery state near T-g which violates Debye-Stokes-Einstein (DSE) scaling and an apparent enhancement in translational diffusion; in contrast, [tau] is largely unaffected by probe size and shape (for the ranges studied), as long as the probe is sufficiently bulky to have its dynamics coupled to the polymer alpha-relaxation, and follows DSE scaling. These effects are associated with the short-time side of the distribution of reorientation relaxation times being sensitive to probe size and aspect ratio and the fact that D-trans is dominated by short-time relaxations while [tau] is dominated by long-time relaxations. With hydrogen bonding between probe and polymer, both D-trans and [tau] may be affected. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 28]
机译:在接近玻璃化转变温度T-g的几种聚合物中比较了各种探针的旋转和平移动力学。使用二次谐波产生来测量旋转弛豫分布和平均旋转弛豫时间τ,并且使用荧光非辐射能量转移来测量D-trans,即平移扩散系数。 D-trans受探针大小和形状的影响很大,通常在接近T-g的橡胶状态下具有温度依赖性,这违反了Debye-Stokes-Einstein(DSE)的定标,并明显增强了平移扩散;相反,τ在很大程度上不受探针尺寸和形状的影响(对于所研究的范围而言),只要探针足够大以使其动力学与聚合物α-松弛偶联并且遵循DSE定标即可。这些效应与重新定向弛豫时间的分布的短时侧对探针尺寸和纵横比敏感,以及D-trans主要由短时弛豫主导而τ主要由长期弛豫主导的事实有关。 。通过探针和聚合物之间的氢键,D-反式和τ都可能受到影响。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:28]

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