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首页> 外文期刊>Fortschritte der Physik >Optically transparent aromatic poly(ester imide)s with low coefficients of thermal expansion. 2: Effect of the introduction of alkyl-substituted p-biphenylene units
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Optically transparent aromatic poly(ester imide)s with low coefficients of thermal expansion. 2: Effect of the introduction of alkyl-substituted p-biphenylene units

机译:光学透明芳族聚(酯)具有低热膨胀系数的芳族聚(酯酰亚胺)S。 2:烷基取代的对二苯基单位引入的效果

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A series of ester-linked tetracarboxylic dianhydrides (TA-X) were synthesized from trimellitic anhydride chloride and 4,4-biphenol analogs containing different numbers and positions of methyl substituents. Aromatic poly(ester imide)s (PEsIs) were polymerized from TA-Xs and 2,2-bis(trifluoromethyl)benzidine to investigate the film properties systematically. A significant substituent effect on the target properties (T-g, optical transparency, the linear coefficient of thermal expansion (CTE) and ductility) was observed. A PEsI containing 2,2,3,3,5,5-hexamethyl-substituted p-biphenylene units was chemically imidized in a homogeneous state. It was highly soluble at room temperature, even in less hygroscopic non-amide solvents such as cyclopentanone (CPN), and provided a stable CPN solution with a high solid content. The CPN-cast PEsI film was almost colorless as suggested from the rather low yellowness index (3.2), high light transmittance at 400nm (71.5%) and very low haze (1.15%). This PEsI film also had a high T-g (294 degrees C, determined by thermomechanical analysis) in addition to a low CTE (21.7ppm K-1), moderate film ductility and very low water uptake. A structural modification of the PEsI by copolymerization with a tetracarboxylic dianhydride with a rigid/linear structure was effective in further reducing the CTE while maintaining the other excellent target properties. Thus, some of the PEsIs developed in this work are promising candidates as novel plastic substrates for use in image display devices. (c) 2017 Society of Chemical Industry
机译:一系列酯连接的四羧酸二酐(Ta-X)由甲硫甲酸酐氯化物和含有不同数量和甲基取代基的位置的4,4-双苯酚类似物合成。芳族聚(酯酰亚胺)S(P.ESS)由TA-XS和2,2-双(三氟甲基)苯并丁胺聚合,系统地研究膜性能。观察到对目标性质的显着取代基效应(T-G,光学透明度,线性膨胀系数(CTE)和延展性)。将含有2,2,3,3,5,5-六甲基取代的对二苯基单元的PESI以均匀状态化学酰亚胺化。它在室温下高度可溶,即使在不太吸湿的非酰胺溶剂如环戊酮(CPN)中,也提供了具有高固体含量的稳定CPN溶液。 CPN铸造的Pesi薄膜几乎是无色的,如较低的低黄色指数(3.2),400nm(71.5%)的高透光率,非常低的雾度(1.15%)。除了低CTE(21.7ppm k-1),中等胶片延展性和非常低的水吸收之外,该Pesi膜还具有高T-G(294℃,通过热机械分析确定)。通过用刚性/线性结构与四羧酸二酐与四羧酸二酐共聚的结构改性在保持其他优异的靶性质的同时进一步减少CTE。因此,在本作工作中开发的一些P候选人是用于图像显示装置的新型塑料基板的候选者。 (c)2017化学工业协会

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