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首页> 外文期刊>Dyes and Pigments >A calix[4]resorcinarene-based hyper-structured molecule bearing disperse red 1 as the chromophore with enhanced photorefractive performance under non-electric field
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A calix[4]resorcinarene-based hyper-structured molecule bearing disperse red 1 as the chromophore with enhanced photorefractive performance under non-electric field

机译:基于Calix [4]基于间苯二酚的超结构分子轴承分散红色1作为发色团,在非电场下具有增强的光折叠性能

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摘要

A hyper-structured molecule (HSM) CRA-DR1 and a model molecule Ph-DR1 for photorefractive (PR) application under non-electric field were designed and synthesized via highly reactive "click" reaction between alkynyl derivatives of calix [4]resorcinarene (CRA) or resorcinol and an azide derivative of disperse red 1 (DR1) in satisfactory yields. XRD pattern and UV-Vis absorption spectra indicated that the CRA-DR1 with three-dimensional (3D) CRA core could effectively decrease the aggregation, packing and crystallization of the nonlinear optical (NLO) chromophores. AFM images showed a smooth and pinhole-free morphology of the CRA-DR1 film. Two-beam coupling (TBC) experiment was used to test the photorefractive performance in optically transparent films of Ph-DR1 and CRA-DR1 doped with [6,6]-phenyl-C-61-butyric acid methyl ester (PCBM) as a photo-sensitizer and N-ethyl-carbazole (ECz) as a plasticizer. Without poling and without external electric filed, the coupling gain coefficient obtained in the CRA-DR1-based composite is 147.4 cm(-1), which is higher than that of Ph-DR1-based composite (132.6 cm(-1)) owing to its asymmetrical 3D CRA core. Coupled with its convenient synthesis and commercial DR1, CRA-DR1 could serve as a good candidate for PR application.
机译:在非电场下,通过高反应性“点击”反应,设计和合成在非电场下的用于光折叠(PR)施加的超结构化分子(HSM)CRA-DR1和用于光折射(PR)施加的模型分子PH-DR1。[4]间苯二酚( CRA)或间苯二酚和分散红色1(DR1)的叠氮化物衍生物,令人满意的产率。 XRD图案和UV-Vis吸收光谱表明,具有三维(3D)CRA核心的CRA-DR1可以有效地降低非线性光学(NLO)发色团的聚集,包装和结晶。 AFM图像显示CRA-DR1薄膜的平滑和无孔形态。使用双梁耦合(TBC)实验在PH-DR1和CRA-DR1的光学透明薄膜中测试光折叠性能,掺杂有[6,6] - 苯基-C-61-丁酸甲酯(PCBM)作为a光致敏剂和N-乙基 - 咔唑(ECZ)作为增塑剂。在没有抛光并且没有外部电气孔的情况下,在CRA-DR1基复合材料中获得的耦合增益系数为147.4cm(-1),其高于pH-DR1基复合物(132.6cm(-1))到其不对称的3D CRA核心。再加上其方便的合成和商业DR1,CRA-DR1可以作为PR应用的好候选者。

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