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Mechanism of exchange in PBT/PC and PET/PC blends. Composition of the copolymer formed in the melt mixing process

机译:PBT / PC和PET / PC共混物中的交换机制。在熔融混合过程中形成的共聚物的组成

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Mechanisms operating in the exchange reactions occurring in the melt mixing processes of Bisphenol A polycarbonate (PC) with poly(butylene terephthalate) (PBT) and poly(ethylene terephthalate) (PET) blends have been investigated making use of appropriate polymer samples, capped or containing reactive chain end groups. The exchange process may proceed by two different mechanisms: a direct exchange reaction between inner functional groups located inside the polymer chains, i.e., inner-inner, or by attack of reactive chain ends functional groups (outer) on inner groups, i.e., outer-inner. It is shown that the distinction between the two processes can be conveniently made by determining the composition of the copolymer formed in the exchange reaction. The inner-inner mechanism occurs only in the reaction between end-capped or high molar mass PET/PC or PET/PC samples, and it was found that the molar composition of the copolymer formed is always equal to the feed ratio of the two homopolymers and independent from the reaction time. The outer-inner mechanism occurs in the presence of hydroxyl or carboxyl reactive chain ends in PBT and PET samples. The reaction proceeds by the attack of the reactive end groups on the PC chains, originating block copolymers of PC and PBT and low molar mass PC with phenol end groups which are unreactive. The reaction stops right after the reactive end groups are consumed. The amount and the composition of the copolymers generated in the reactions are found to be constant as a function of time. The copolymer composition shows an excess of PBT or PET units with respect to the feed molar ratio. These results indicate that monitoring the composition of the copolymer formed in each case is diagnostic for establishing the mechanism of the reaction. The approach used here allows control of the composition and yield of the copolymer to be produced, and it is applicable to other systems where exchange reactions occur. [References: 32]
机译:已经研究了双酚A聚碳酸酯(PC)与聚对苯二甲酸丁二醇酯(PBT)和聚对苯二甲酸乙二醇酯(PET)共混物的熔融混合过程中发生的交换反应的机理,方法是使用适当的聚合物样品(封端或含有反应性链端基。交换过程可以通过两种不同的机制进行:位于聚合物链内部的内部官能团(即内部-内部)之间的直接交换反应,或通过反应性链端官能团(外部)对内部基团(即外部-内。结果表明,通过确定在交换反应中形成的共聚物的组成,可以方便地进行两种方法之间的区别。内部-内部机理仅发生在封端的或高摩尔质量的PET / PC或PET / PC样品之间的反应中,并且发现所形成的共聚物的摩尔组成始终等于两种均聚物的进料比并且与反应时间无关。内外机理发生在PBT和PET样品中存在羟基或羧基反应性链端的情况下。反应通过PC链上反应性端基的进攻,PC和PBT的嵌段共聚物以及低摩尔质量的PC与未反应的苯酚端基的攻击而进行。反应性端基耗尽后,反应立即停止。发现在反应中产生的共聚物的量和组成是随时间变化的常数。相对于进料摩尔比,共聚物组合物显示过量的PBT或PET单元。这些结果表明,监测每种情况下形成的共聚物的组成对于建立反应机理是诊断性的。此处使用的方法可以控制要生产的共聚物的组成和收率,并且可以应用于发生交换反应的其他系统。 [参考:32]

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