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首页> 外文期刊>Dyes and Pigments >Synthesis, mesomorphic properties and nonlinear optical studies of alkyl and alkoxy phenylacetylene containing phenazine fused extended triphenylene discotic liquid crystalline dyes
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Synthesis, mesomorphic properties and nonlinear optical studies of alkyl and alkoxy phenylacetylene containing phenazine fused extended triphenylene discotic liquid crystalline dyes

机译:烷基和烷氧基苯乙烯苯脲融合延长三苯基盘状液晶结晶染料的合成,苯乙烯和烷氧基苯乙炔的非线性光学研究

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Herein, we have reported the alkyl and alkoxy phenylacetylene containing phenazine fused triphenylene discotic liquid crystals (DLCs) which are obtained by the condensation reaction of triphenylene-1,2-diquinone with 1,2-diamino-4,5-dibromobenzene, followed by Sonogashira C-C coupling reaction with 4-alkyl-phenylacetylene or 4-alkoxy-phenylacetylene. Six novel derivatives were synthesized and evaluated for their thermal and optical properties. They show a broad range of hexagonal columnar phase and retain their mesophase up to room temperature upon cooling from the isotropic liquid. Therrnotropic liquid crystalline properties of all the compounds were studied by polarised optical microscopy (POM), differential scanning calorimetry (DSC). The self assembly of mesophase structure was investigated by X-ray diffraction (XRD) studies. Thermogravimetric analysis of all the mesogens shows good thermal stability over a broad temperature range. The photophysical properties of newly synthesized compounds were measured using UV Vis absorption and photoluminescence emission spectroscopy in anhydrous chloroform solvent. The n-extended conjugation in these mesogens exhibit strong absorption bands falling around 270-487 nm and corresponding emission band at 657-663 nm respectively. The high delocalization of pi- electrons in extended discotic mesogens show high nonlinear optical properties when measured under excitation by nanosecond laser pulses at 532 nm. These materials may find distinctive applications in the semiconducting devices.
机译:在此,我们已经报道了含烷基和烷氧基苯乙烯的苯氮丁基苯乙烯盘状滤液液晶(DLC),其通过三苯基-1,2-己酮与1,2-二氨基-4,5-二溴苯苯醌的缩合反应而获得,然后是Sonogashira CC偶联反应与4-烷基 - 苯乙烯或4-烷氧基 - 苯乙烯。合成六种新型衍生物,并评估其热和光学性质。它们显示出广泛的六边形柱状相,并在从各向同性液体冷却时将它们的中间相达到室温。通过偏振光显微镜(POM),差示扫描量热法(DSC)研究了所有化合物的滴大液晶特性。通过X射线衍射(XRD)研究研究了中间相结构的自组装。所有卵黄素的热重分析在宽温度范围内显示出良好的热稳定性。使用UV Vis吸收和光致发光发射光谱法测量新合成化合物的光物理性质。无水氯仿溶剂。这些卵黄素中的N-扩展缀合在657-663nm下分别表现出落下约270-487nm和相应的发射带的强吸收带。延长光盘脱蛋白中的PI-电子的高临床化显示出在532nm的纳秒激光脉冲的激发下测量时的高非线性光学性能。这些材料可以在半导体装置中找到独特的应用。

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