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Synthesis and properties of polyamides and polyesters on the basis of 2,2 '-bipyridine-5,5 '-dicarboxylic acid and the corresponding polymer-ruthenium complexes

机译:基于2,2'-联吡啶-5,5'-二羧酸和相应的聚合物-钌配合物的聚酰胺和聚酯的合成和性能

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series of polyamides and polyesters derived from 2,2'-bipyridine-5,5'-dicarboxylic acid have been synthesized. Different types of aliphatic and aromatic diamine and diol monomers with different structure were polymerized with the diacid or diacid chloride by using different polymerization methods. Most of these polymers exhibited modest thermal stabilities with decomposition temperatures in the range 320-500 degrees C, depending on the structure of the polymer main chain. It was found that some polyamides with a rigid main chain formed a lyotropic: mesophase when dissolved in concentrated sulfuric acid or HMPA-4% LiCl solvent systems. For those polyamides and polyesters with a more flexible main chain, a thermotropic liquid crystal phase was observed. If a long and flexible pendant chain was attached to the polyesters, side chain melting was observed before the onset of the crystalline-nematic transition. The 2,2'-bipyridyl moieties were able to form a complex with ruthenium. These polymer-ruthenium complexes were either synthesized by metalation of the polymers or synthesized directly from the corresponding ruthenium-containing monomer. After the formation of ruthenium complexes, they were able to enhance the photosensitivity and charge carrier mobility of the polymers. The ruthenium-containing polymers also emit red light at ca. 700 nm owing to the emission from the metal-ligand charge-transfer excited states. Some polymers with good film forming properties were fabricated into simple single-layer light-emitting devices, and red light emission was observed when the devices were subjected to forward bias. [References: 55]
机译:合成了由2,2'-联吡啶-5,5'-二羧酸衍生的一系列聚酰胺和聚酯。通过使用不同的聚合方法,将具有不同结构的不同类型的脂肪族和芳香族二胺和二醇单体与二酸或二酰氯进行聚合。这些聚合物中的大多数表现出适度的热稳定性,取决于聚合物主链的结构,其分解温度为320-500摄氏度。发现一些具有刚性主链的聚酰胺在溶解于浓硫酸或HMPA-4%LiCl溶剂体系中时会形成溶致:中间相。对于那些具有更柔性主链的聚酰胺和聚酯,观察到热致液晶相。如果将长且柔性的侧链连接到聚酯上,则在结晶向列相转变开始之前观察到侧链熔化。 2,2'-联吡啶基部分能够与钌形成络合物。这些聚合物-钌配合物是通过聚合物的金属化合成的,或者是直接由相应的含钌单体合成的。钌络合物形成后,它们能够增强聚合物的光敏性和电荷载流子迁移率。含钌的聚合物在约200 nm时也会发出红光。由于来自金属-配体的电荷转移激发态的发射而产生了700 nm的光。一些具有良好成膜性能的聚合物被制成简单的单层发光器件,并且当器件受到正向偏压时观察到红光发射。 [参考:55]

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