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Liquid crystalline coumarin polymers, 1 Synthesis and properties of side-group liquid crystalline polymers with coumarin moieties

机译:液晶香豆素聚合物,1带有香豆素部分的侧基液晶聚合物的合成与性能

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摘要

This paper deals with two series of novel side-group liquid crystalline polymers containing coumarin(2H-1-benzopyran-2-one) moieties. Several kinds of polymethacrylates of Series I (Fig. 1) containing a 7- unit in the side group with or without substituent at 3 or 4 position of coumarin ring were prepared, in order to study the influence of spacers, tail groups and the positions of the tail groups on their liquid crystalline properties. These polymethacrylates (Series II, Fig. 1) containing a phenyl 7-octyloxycoumarin-3-carboxylate, which consisted of a turned ester group between the aromatic rings in the central unit of side group as compared to Series I, were also prepared. The of the thermal behavior of the two series that the structure of the side-group significantly crystalline properties of the polymers. that the polymers in Series I with substituents position of the coumarin ring exhibited mesophase with a wide temperature range, whereas the polymers with substituents at the 4 position showed no mesophase. In each polymer of Series I tended to exhibit a state, whereas each polymer of Series II tended to exhibit a crystalline state. This would be due to the different of side groups of the polymers in Series I and II, It was also revealed thar the UV-Vis absorption and fluorescence spectra were influenced by their mesogenic structures and chromophore aggregations. Furthermore, the preliminary results about the emission spectra suggested that the annealing of the polymer film had a great; influence on its fluorescence property. [References: 38]
机译:本文研究了两个包含香豆素(2H-1-苯并吡喃-2-酮)部分的新型侧基液晶聚合物。制备了几种类型I的聚甲基丙烯酸酯(图1),侧基中的7个单元在香豆素环的3或4位带有或不带有取代基,以研究间隔基,尾基和位置的影响尾基的液晶特性。还制备了这些含有苯基7-辛氧基香豆素-3-羧酸酯的聚甲基丙烯酸酯(系列II,图1),与系列I相比,其由侧基中心单元的芳环之间的转化酯基组成。这两个系列的热行为表明侧基的结构显着提高了聚合物的结晶性能。在香豆素环上带有取代基的I系列聚合物在宽温度范围内均表现出中间相,而在4位带有取代基的聚合物则没有中间相。在系列I的每种聚合物中倾向于表现出状态,而在系列II的每种聚合物中倾向于表现出结晶状态。这可能是由于系列I和II中聚合物侧基的不同所致。另外还表明,UV-Vis吸收和荧光光谱受介晶结构和生色团聚集的影响。此外,有关发射光谱的初步结果表明,该聚合物膜的退火性能很好。影响其荧光性能。 [参考:38]

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