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Effect of backbone flexibility on the thermal properties of side-group liquid-crystal polymers

机译:主链柔性对侧基液晶聚合物热性能的影响

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摘要

A new series of side-group liquid-crystal polymers, the poly[ω-(4-methoxybiphenyl-4 prime -yloxy)-alkyl acrylate]s, has been synthesized in which the spacer length is varied from 3 to 12 methylene units. The thermal behavior of the polymers has been characterized using differential scanning calorimetry and polarized light microscopy. All 10 homologues exhibit thermotropic liquid crystalline behavior. The glass transition temperatures decrease initially before reaching a limiting value as the spacer length is increased. This is attributed to a plasticisation of the backbone by the side groups. A small odd-even effect in the clearing temperatures is observed on increasing the spacer length in which the odd members display the higher values. The properties of these polymers are compared to the analogous polymethacrylate-based materials and also to the corresponding polymers containing 4-cyanobiphenyl as the mesogenic unit. This reveals that the structure of the liquid-crystal phase influences the glass transition temperature. Thus, the 4-methoxybiphenyl-containing polymers exhibit the higher glass transition temperatures reflecting the higher packing density observed in the smectic phases exhibited by these polymers when compared to the interdigitated phases exhibited by 4-cyanobiphenyl-containing polymers. A comparison of the clearing temperatures reveals that the expected trend in which the more flexible backbones exhibit the higher clearing temperatures is not found. It is suggested that for the 4-methoxybiphenyl-based polyacrylates the clearing transitions may be entropically driven whereas for interdigitated phase structures the clearing transitions are driven by the interaction between the 4-cyanobiphenyl units.
机译:合成了一系列新的侧基液晶聚合物,聚[ω-(4-甲氧基联苯-4伯-甲氧基)-丙烯酸烷基酯],其中间隔物的长度在3至12个亚甲基单元之间变化。使用差示扫描量热法和偏光显微镜已经表征了聚合物的热行为。所有10个同系物均表现出热致液晶行为。随着间隔物长度的增加,玻璃化转变温度在达到极限值之前开始下降。这归因于侧基对主链的增塑作用。在增加隔离物长度时,在清除温度中观察到小的奇偶效应,其中奇数成员显示更高的值。将这些聚合物的性质与类似的基于聚甲基丙烯酸酯的材料进行比较,还与包含4-氰基联苯作为介晶单元的相应聚合物进行比较。这表明液晶相的结构影响玻璃化转变温度。因此,与含4-氰基联苯的聚合物表现出的叉指相相比,含4-甲氧基联苯的聚合物表现出更高的玻璃化转变温度,反映出在这些聚合物表现出的近晶相中观察到的更高的堆积密度。比较清洁温度发现没有发现预期的趋势,其中更柔软的骨架显示出更高的清洁温度。建议对于基于4-甲氧基联苯的聚丙烯酸酯,可以由熵驱动透明转变,而对于指叉相结构,透明转变由4-氰基联苯单元之间的相互作用驱动。

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