首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Time-resolved light scattering of the phase separation in polymer-dispersed liquid crystals formed by photo-polymerization induced phase separation
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Time-resolved light scattering of the phase separation in polymer-dispersed liquid crystals formed by photo-polymerization induced phase separation

机译:通过光聚合诱导的相分离形成的聚合物分散液晶中的相分离的时间分辨光散射

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摘要

Time-resolved light scattering is utilized to monitor the phase separation of photo-initiated polymer-dispersed liquid crystals.At the lowest cure intensities studied,the system undergoes spinodal decomposition and the results are analyzed with Cahn-Hilliard theory.As the cure intensity increases,the rate of phase separation increases such that the early stages of spinodal decomposition are no longer observable.These systems are analyzed using the Debye-Bueche model,which provides the time evolution of the number and size of LC domains.These results indicate that an increase in cure beam intensity initially increases the rate of domain growth,but this effect is overwhelmed by the fast vitrification and cross-linking that can occur at highest cure beam intensities.
机译:利用时间分辨光散射监测光引发的聚合物分散液晶的相分离。在研究的最低固化强度下,系统经历旋节线分解,并使用Cahn-Hilliard理论分析结果。随着固化强度的增加,相分离的速率增加,使得不再观察到旋节线分解的早期阶段。使用Debye-Bueche模型对这些系统进行了分析,该模型提供了LC域的数量和大小的时间演化。这些结果表明,固化束强度的增加最初会增加畴的生长速度,但是在最高固化束强度下可能会发生快速的玻璃化和交联,这种效果不堪一击。

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