首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Liquid-crystalline compounds containing both a strong push-pull azo chromophore and a cholesteryl unit as photoresponsive molecular glass materials
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Liquid-crystalline compounds containing both a strong push-pull azo chromophore and a cholesteryl unit as photoresponsive molecular glass materials

机译:包含强推挽偶氮发色团和胆固醇基单元的液晶化合物作为光敏分子玻璃材料

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A series of liquid-crystalline (LC) compounds (R-Chol, R: CA, CN and NT), containing both a strong push-pull azo chromophore and a cholesteryl unit, was synthesized as novel molecular glass materials. The molecular structures and phases of the condensed state were characterized by spectral analyses, DSC, XRD and POM. The azo compounds existed as glassy solids at room temperature and entered the smectic LC phase above the glass transition temperature. Optical-quality solid films of R-Chol were obtained by spin-coating. The spin-coated films of CA-Chol and CN-Chol existed in the amorphous state and only the NT-Chol film showed weak birefringence and polydomain texture. Upon irradiation with a linearly polarized Ar+ laser (488 nm) beam, photoinduced orientation rapidly developed for CA-Chol and CN-Chol films, which showed significant photoinduced birefringence and dichroism. When the irradiating light was switched off, the birefringence did not show decay relaxation as is the usual case, but showed a small increase in the relaxation process. Photoinduced surface-relief-grating (SRG) formation was investigated by irradiating the films with two p-polarized interfering Ar+ laser beams. SRGs formed on the CA-Chol films showed the highest inscription rate in the series. The efficiencies of both photoinduced orientation and SRG formation were enhanced for the azo chromophore bearing the carboxylic group as the electron-withdrawing substituent. Two-dimensional (2D) quasi-crystal structures with 10- and 12-fold rotation symmetries were successfully fabricated on the CN-Chol films by using the dual-beam multiple exposure technique. The capability of the materials as photo-storage media was demonstrated by holographic recording.
机译:合成了一系列液晶(LC)化合物(R-Chol,R:CA,CN和NT),它们既包含强推拉偶氮发色团,又包含胆固醇基单元,是新型的分子玻璃材料。通过光谱分析,DSC,XRD和POM对缩合态的分子结构和相进行了表征。偶氮化合物在室温下以玻璃状固体形式存在,并在玻璃化转变温度以上进入近晶LC相。通过旋涂获得光学品质的R-Chol固体膜。 CA-Chol和CN-Chol的旋涂膜以非晶态存在,只有NT-Chol膜显示弱的双折射和多畴纹理。在用线偏振Ar +激光(488 nm)光束照射后,CA-Chol和CN-Chol薄膜的光致取向迅速发展,显示出显着的光致双折射和二向色性。当关闭照射光时,双折射没有像通常的情况那样显示出衰减弛豫,但是在弛豫过程中显示出小的增加。通过用两个p偏振的Ar +激光束照射薄膜,研究了光诱导表面浮雕光栅(SRG)的形成。在CA-Chol薄膜上形成的SRG在该系列中显示出最高的铭刻率。对于带有羧基作为吸电子取代基的偶氮发色团,光致取向和SRG形成的效率均得到提高。通过使用双光束多重曝光技术,在CN-Chol薄膜上成功地制造了具有10倍和12倍旋转对称性的二维(2D)准晶体结构。通过全息记录证明了该材料作为光存储介质的能力。

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