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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Novel ethero atoms containing polyesters based on 2,6-naphthalendicarboxylic acid: A comparative study with poly(butylene naphthalate)
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Novel ethero atoms containing polyesters based on 2,6-naphthalendicarboxylic acid: A comparative study with poly(butylene naphthalate)

机译:基于2,6-萘二甲酸的新型含醚原子的聚酯:与聚萘二甲酸丁二酯的比较研究

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Poly(butylene naphthalate) (PBN), poly(diethylene naphthalate) (PDEN), and poly(thiodiethylene naphthalate) (PTDEN) were synthesized and characterized in terms of chemical structure and molecular weight. The polyesters were examined by TGA, DSC, and DMTA. All the polymers showed a good thermal stability, even though depending on chemical structure. At room temperature they appeared as semicrystalline materials; the effect of the introduction along the PBN polymer chain of ether oxygen atoms or sulfur ones was a lowering in the T-g value, a decrement of T-m, and a decrease of the crystallization rate. Changing in chemical structure also affects the main a absorption associated with the glass transition which moves to lower temperature and whose energetic requirements decrease. The results were explained as due to the presence of highly flexible C-S-C or C-O-C bonds in the polymeric chain. (c) 2007 Wiley Periodicals, Inc.
机译:合成了聚萘二甲酸丁二酯(PBN),聚萘二甲酸二乙二酯(PDEN)和聚萘二甲酸乙二酯(PTDEN),并根据化学结构和分子量进行了表征。通过TGA,DSC和DMTA检查聚酯。即使取决于化学结构,所有聚合物都显示出良好的热稳定性。在室温下,它们以半结晶物质的形式出现。沿着PBN聚合物链引入醚氧原子或硫原子的效果是T-g值降低,T-m降低和结晶速率降低。化学结构的变化也会影响与玻璃化转变有关的主要吸收,玻璃化转变为更低的温度,其能量需求降低。解释该结果是由于在聚合物链中存在高度柔性的C-S-C或C-O-C键。 (c)2007年Wiley Periodicals,Inc.

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