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Fast copolymer network liquid crystals for tunable birefringence colors

机译:用于可调谐双折射颜色的快速共聚物网络液晶

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摘要

A fast-switching, tunable color filter was found in a copolymer network liquid crystal (LC), which was in situ generated in a conventional LC test cell with parallel aligned glass plates and investigated with polarized light. Polarization filters were used to convert the tunable optical phase retardance of the test cells to birefringence colors as is always possible in a LC test cell with carefully adjusted cell gap and effective birefringence. The cell gap of the samples could be adjusted to a value of 9 mu m, which is not easily possible in a polymer LC composite without creating defects. In these samples, the typical pastel colors seen frequently in birefringent samples could be avoided. The transmittance spectra were recorded and converted to CIE 1931 color coordinates, which showed that the colors seen had a reasonable distance to the white point. The electro-optic switching times of the samples were investigated: Fast responses of t(on) + t(off) < 5 ms were found, which is an impressive speed for tunable birefringence colors in LCs and LC composites. Upon increasing addressing voltages, a blueshift of the peak seen in the transmittance spectra was observed. The samples consisted of copolymer network LC, generated from a reactive mixture with mesogenic monomer and nonmesogenic comonomer. The tunable color was seen selectively in samples with dodecyl acrylate as comonomer. The experiments show how even a straightforward electro-optic experiment still can result in unexpended findings, which may expand the use of LC composites in nondisplay applications. The polymer morphology in samples with a larger cell gap was investigated with scanning electron microscopy, and interdefect distances of approximate to 40 mu m were found. The appearance of defects in test cells with a cell gap of 9 mu m could be avoided because the cell gap was much smaller than the measured interdefect distances in test cells with a larger cell gap. (C) 2019 Optical Society of America
机译:在共聚物网络液晶(LC)中发现了快速切换的可调谐滤色器,其原位在具有平行排列的玻璃板中的传统LC测试单元中产生并用偏振光进行研究。偏振滤波器用于将测试电池的可调谐光学相延迟转换为双折射颜色,如在LC测试单元中始终可以进行精心调整的单元间隙和有效的双折射。样品的细胞间隙可以调节至9μm的值,该值在聚合物LC复合材料中不易产生缺陷。在这些样品中,可以避免经常在双折射样品中看到的典型柔和颜色。记录并转换为CIE 1931颜色坐标的透射光谱,表明所看到的颜色与白点具有合理的距离。研究了样品的电光切换时间:发现样品的快速反应(ON)+ T(OFF)<5 ms,这是LC和LC复合材料中可调谐双折射颜色的令人印象深刻的速度。在增加寻址电压时,观察到在透射率谱中看到的峰值的蓝色。样品由共聚物网络LC组成,由与介晶单体和非染色共聚单体的反应混合物产生。选择性地在用十二烷基丙烯酸酯作为共聚单体的样品中选择性地进行可调谐颜色。实验表明,即使是直接的电光实验仍然可能导致未直通的发现,这可能会扩大LC复合材料在非展开应用中的使用。通过扫描电子显微镜研究具有较大细胞间隙的样品中的聚合物形态,并发现近似约为40μm的近距离距离。可以避免具有9μm的细胞间隙的测试单元中的缺陷的外观,因为细胞间隙远小于测试电池中的测量的细胞间隙中的测量的互补距离。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第20期|共8页
  • 作者单位

    Univ Kassel Inst Chem FB10 Heinrich Plett Str 40 D-34132 Kassel Germany;

    Univ Kassel Inst Chem FB10 Heinrich Plett Str 40 D-34132 Kassel Germany;

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  • 正文语种 eng
  • 中图分类 应用;
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