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Studies on Thermotropic Main Chain Liquid Crystalline Segmented Polyurethanes

机译:热致主链液晶链段聚氨酯的研究

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摘要

Previous studies on thermotropic main chain liquid crystalline polyurethanes (TLCPUs) prepared from 4-{[4-(6-hydroxyhexyloxy)-phenylimino]-methyl}-benzoic acid 4-{[4-(6-hyudroxyhexyloxy)-phenylimino]-methyl}-phenyl ester (mesogenic diol) as chain extender were continued. In this article, the main chain liquid crystalline polyurethanes are based on the mesogenic diol as chain extender, poly(tetramethylene oxide)glycol (PTMG) soft segment of different molecular weight PTMGs (M_n =650, 1000, 2000), different diisocyanates including 4,4'-methylene bis(cyclohexyl isocyanate) (H_(12)MDI) and 4,4'-methylene bis(phenyl isocyanate) (MDI). The polyurethanes were investigated by FTIR spectroscopy for structural confirmation and DSC and hot stage optical polarizing microscope to study the mesomorphic properties. The molecular weight distribution was determined by GPC. The effect of partial replacement of the mesogenic diol by 20-50 mol percent PTMG and the effect of the diisocyanates on the liquid crystalline properties were studied. It was observed that the partial replacement of the mesogenic diol by PTMG of varying molecular weights and also the diisocyanates influenced the phase transitions and the occurrence of mesophase textures. Characteristic liquid-crystalline textures were observed when sufficient content of the mesogenic diol was present. If the flexible spacer was longer, a higher content of mesogenic agent was needed to obtain LC properties. Depending on the flexible spacer length and the mesogenic content, grained and threadlike textures were obtained for the H_(12)MDI series polymers while the Pus prepared from MDI showed only grained texture for all the compositions. Elastomeric behavior was observed in the polymers from PTMG 2000 and H_(12)MDI with mesogen content 20-40 mol percent.
机译:由4-{[4-(6-羟基己氧基)-苯基亚氨基]-甲基}-苯甲酸4-{[4-(6-羟基己氧基)-苯基亚氨基]-甲基制得的热致主链液晶聚氨酯(TLCPU)的先前研究继续使用phenyl-苯基酯(介晶二醇)作为扩链剂。在本文中,主链液晶聚氨酯是基于介晶二醇作为增链剂,分子量不同的PTMG(M_n = 650、1000、2000)的聚四氢呋喃二醇(PTMG)软链段,不同的二异氰酸酯(包括4种) ,4'-亚甲基双(环己基异氰酸酯)(H_(12)MDI)和4,4'-亚甲基双(苯基异氰酸酯)(MDI)。通过FTIR光谱对聚氨酯进行了结构确认,并通过DSC和热台光学偏光显微镜研究了聚氨酯的介晶性能。分子量分布通过GPC确定。研究了用20-50 mol%PTMG部分取代介晶二醇的效果以及二异氰酸酯对液晶性能的影响。观察到,用分子量不同的PTMG部分取代介晶二醇,以及二异氰酸酯也影响相变和中间相织构的出现。当存在足够含量的介晶二醇时,观察到特征液晶质地。如果柔性间隔物更长,则需要更高含量的介晶剂才能获得LC性能。取决于柔性间隔物的长度和介晶含量,H_(12)MDI系列聚合物获得了颗粒状和螺纹状纹理,而由MDI制备的Pus仅显示出所有组合物的颗粒状纹理。在PTMG 2000和H_(12)MDI的聚合物中液晶元含量为20-40摩尔%时观察到了弹性行为。

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