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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Thermotropic main chain liquid crystalline polyesters containing ferrocene and phosphate units: synthesis and characterization
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Thermotropic main chain liquid crystalline polyesters containing ferrocene and phosphate units: synthesis and characterization

机译:含二茂铁和磷酸酯单元的热致主链液晶聚酯:合成与表征

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摘要

A new series of liquid crystalline main chain copolyesters were prepared, having ferrocene in the mesogenic segment and a methyl phosphate group along with a methylene spacer. The even numbered methylene groups were varied from two to ten. Liquid crystalline behaviour was investigated on a hot stage optical polarized microscope. Thermal properties of the polymers were analyssed by TGA and DSC, revealing that the polymers yield high char products, probably caused by the formation of phosphorus and iron oxides. The glass transition (T_g) temperatures of the polymers were found to be fairly low, the result of the incorporation of bulky phosphorus and ferrocene moieties in the chain. The phase behaviour was analysed and correlated with the structure of the polymers. The liquid crystalline textures of the polymers became more transparent with increasing spacer length. Energy minimized structures for the polymer repeating units reveal that both the ferrocene and phosphorus moieties produce more molecular entanglement, thus reducing the T_g and T_m of the polymers.
机译:制备了一系列新的液晶主链共聚酯,其在介晶链段中具有二茂铁,并且具有亚甲基间隔基和磷酸甲酯基。偶数的亚甲基从2到10变化。在热台光学偏振显微镜上研究了液晶行为。通过TGA和DSC分析了聚合物的热性能,发现该聚合物产生高炭产物,可能是由磷和氧化铁的形成引起的。发现聚合物的玻璃化转变(T_g)温度相当低,这是由于在链中引入了庞大的磷和二茂铁部分。分析了相行为并与聚合物的结构相关。随着间隔物长度的增加,聚合物的液晶质地变得更加透明。聚合物重复单元的能量最小化结构表明,二茂铁和磷部分均产生更多的分子缠结,从而降低了聚合物的T_g和T_m。

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