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Sequential reordering in condensation copolymers, 4 - Crystallization-induced sequential reordering in poly(ethylene terephthalate)/polycarbonate copolymers as revealed by the behavior of the amorphous phases

机译:缩合共聚物中的顺序重排,聚对苯二甲酸乙二醇酯/聚碳酸酯共聚物中4-结晶诱导的顺序重排,如无定形相的行为所揭示

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An equimolar blend of poly(ethylene terephthalate) (PET)(c) and bisphenol-A-polycarbonate (PC)(d) is studied by dynamic-mechanical thermal analysis (DMTA) and X-ray scattering after thermal treatment that enables transesterification. As demonstrated by wide-angle X-ray scattering (WAXS) measurements, prolonged thermal treatment at 280 degrees C gives rise to a copolymer that no longer reveals melting or crystallization. In accordance with previous reports, this effect is attributed to the formation of a random copolymer. Additional annealing of such samples below the melting temperature of PET results in restoration of the crystallization ability. This effect is explained by crystallization-induced sequential reordering from random to block copolymer by means of transreactions which closes the cycle of transformations from two homopolymers via block-and random copolymer back to a block copolymer. The behavior of the amorphous phases is studied by means of DMTA demonstrating that their glass transition temperatures T-g's vary in accordance with the crystallinity changes. The random copolymer is characterized by a more or less homogeneous amorphous phase. In contrast to this, the mechanical mixture and the two block copolymers (the initial and that with the restored blocky structure) show DMTA peaks of two amorphous phases, clearly separated and with distinct individual T-g's. Viscosity measurements also demonstrate that the random copolymer significantly differs in its viscosity as compared to all other samples. These results represent a further evidence for the effect of block restoration via crystallization-induced sequential reordering. [References: 18]
机译:聚对苯二甲酸乙二醇酯(PET)(c)和双酚A-聚碳酸酯(PC)(d)的等摩尔共混物通过动态机械热分析(DMTA)和能够进行酯交换反应的热处理后的X射线散射进行了研究。如广角X射线散射(WAXS)测量所表明的,在280摄氏度下长时间的热处理会产生一种不再显示熔融或结晶现象的共聚物。根据先前的报道,这种作用归因于无规共聚物的形成。在PET的熔融温度以下对这些样品进行额外的退火导致结晶能力的恢复。这种作用可以通过结晶反应通过无规共聚物转变为嵌段共聚物的顺序重新排列来解释,该重排反应关闭了两种均聚物通过嵌段和无规共聚物再回到嵌段共聚物的转化周期。通过DMTA研究非晶相的行为,证明其玻璃化转变温度T-g根据结晶度变化而变化。无规共聚物的特征在于或多或少均匀的无定形相。与此相反,机械混合物和两种嵌段共聚物(初始嵌段共聚物和具有恢复的嵌段结构的嵌段共聚物)显示出两个无定形相的DMTA峰,它们清楚地分开并且具有不同的单个T-g。粘度测量还表明,与所有其他样品相比,无规共聚物的粘度显着不同。这些结果代表了通过结晶诱导的顺序重排进行块修复的效果的进一步证据。 [参考:18]

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