首页> 外文期刊>Bulletin of the Korean Chemical Society >Photo-alignment of Low-molecular Mass Nematic Liquid Crystals on Photochemically Bifunctional Chalcone-epoxy Film by Irradiation of a Linearly Polarized UV Light
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Photo-alignment of Low-molecular Mass Nematic Liquid Crystals on Photochemically Bifunctional Chalcone-epoxy Film by Irradiation of a Linearly Polarized UV Light

机译:低分子向列型液晶在光化学双官能查耳酮-环氧薄膜上的光取向通过线偏振紫外光的辐照

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We investigated the effect of ionic component on crystalline morphology development during isothermal annealing in a sodium neutralized sulfonated poly(ethylene terephthalate) ionomer (Ion-PET) by time-resolved small-angle x-ray scattering (TR-SAXS) using synchrotron radiation. At early stage in Ion-PET, SAXS intensity at a low annealing temperature (Ta = 120 ∩) decreased monotonously with scattering angle for a while. Then SAXS profile showed a peak and the peak position progressively moved to wider angles with isothermal annealing time. Finally, the peak intensity decreased, shifting the peak angle to wider angle. It is revealed that ionic aggregates (multiplets structure) of several nm, calculated by Debye-Bueche plot, are formed at early stage. They seem to accelerate the crystallization rate and make fine crystallites without spherulite formation (supported by optical microscopy observation). From decrease of peak intensity in SAXS,it is suggested that new lamellae are inserted between the preformed lamellae so that the concentration of ionic multiplets in amorphous region decreases to lower the electron density difference between lamellar crystal and amorphous region. In addition, analysis on the annealing at a high temperature (Ta = 210 ∩) by optical microscopy, light scattering and transmission electron microscopy shows a formation of spherulite, no ionic aggregates, the retarded crystallization rate and a high level of lamellar orientation.
机译:我们通过使用同步加速器辐射的时间分辨小角X射线散射(TR-SAXS),研究了钠中和的磺化聚对苯二甲酸乙二醇酯离聚物(Ion-PET)在等温退火过程中离子成分对晶体形态发展的影响。在离子PET的早期阶段,低退火温度(Ta = 120∩)时SAXS强度随散射角单调下降一段时间。然后,SAXS轮廓显示一个峰,且峰位置随着等温退火时间逐渐移至更宽的角度。最终,峰强度降低,峰角移至更宽的角度。揭示了在早期形成了由德拜-布切图(Debye-Bueche plot)计算的几nm的离子聚集体(多峰结构)。它们似乎加快了结晶速度,并形成了没有球晶形成的细微晶体(由光学显微镜观察支持)。从降低SAXS峰强度的角度出发,建议在预先形成的薄片之间插入新的薄片,以使非晶区域中离子多重峰的浓度降低,从而降低层状晶体与非晶区域之间的电子密度差。此外,通过光学显微镜,光散射和透射电子显微镜对高温(Ta = 210∩)进行退火的分析表明,形成了球晶,没有离子聚集体,结晶速率降低,层状取向度高。

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