Layering and relaxation in molecular films of a photosensitive polyacrylate from X-ray reflectivity and in elastic neutron scattering experiments

L. Cristofolini, M. Fontana, O. Konovalov
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引用次数: 0

Abstract

Abstract In this paper we study the effect of ultraviolet (UV) illumination on the microscopic structure of molecular layers of a photosensitive fragile polymeric glass former. In particular we show that the increased time relaxation and the reduced mobility of thin molecular multilayers recently reported using high-precision pump-probe ellipsometric experiments correlate with a geometrically induced layering effect which was confirmed by synchrotron X-ray reflectivity experiments. Furthermore the results agree also with recent inelastic-quasielastic neutron scattering measurements of the coupling between the photosensitive side chains and the polymeric main chain. The observed layering is destroyed upon UV illumination. The significance of such results on the glass transition behaviour of this material is discussed.
从x射线反射率和弹性中子散射实验看光敏聚丙烯酸酯分子膜的分层和弛豫
摘要本文研究了紫外光照射对光敏脆性聚合物玻璃原体分子层微观结构的影响。特别是,我们表明,最近报道的使用高精度泵-探针椭偏实验的薄分子多层的时间弛豫增加和迁移率降低与几何诱导的分层效应相关,这是由同步加速器x射线反射率实验证实的。此外,结果也与最近对光敏侧链和聚合物主链之间耦合的非弹性-准弹性中子散射测量结果一致。观察到的分层在紫外线照射下被破坏。讨论了这些结果对该材料玻璃化转变行为的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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