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首页> 外文期刊>Polymer Degradation and Stability >Hydrolytic degradation of isosorbide-based polycarbonates: Effects of terminal groups, additives, and residue catalysts
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Hydrolytic degradation of isosorbide-based polycarbonates: Effects of terminal groups, additives, and residue catalysts

机译:基于异山梨醇的聚碳酸酯的水解降解:末端基团,添加剂和残留物催化剂的影响

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The hydrolysis degradation of bisphenol-A polycarbonate (BPA-PC), isosorbide (ISB)-co-1,4-cyclohexanedimethanol (CHDM) polycarbonate (IcC-PC), and BPA-PC/IcC-PC reactive blends were systematically investigated. The terminal hydroxyl groups of BPA-PC, thermally derived chemical structure on IcC-PC chains, and derivatives from phosphite antioxidants trigger severe hydrolysis degradation. ~1H-NMR analysis shows that carbonate groups connected to the BPA unit are most susceptible to hydrolysis, followed by 1SB and CHDM units, demonstrating that the acidity of monomers plays a key role in the hydrolysis degradation of polycarbonates. Residual catalysts may cause significant hydrolysis in BPA-PC/IcC-PC reactive blends. Hydrolysis prefers to occur on the exo position of ISB unit with a low steric hindrance rather than on the endo position with a high electrophilicity, indicating that the residual catalyst acts as a Lewis acid and likely promotes hydrolysis through coordination mechanism. The hydrolysis resistance of BPA-PC/IcC-PC blends with a Na-based catalyst is lower than that of blends with K- and Cs-based catalysts because of the strong coordination ability.
机译:系统研究了双酚 - 一种聚碳酸酯(BPA-PC),异山梨醇(ISB)-CO-1,4-环己二甲醇(CHDM)聚碳酸酯(ICC-PC)和BPA-PC / ICC-PC反应性共混物的水解降解。 BPA-PC的末端羟基,ICC-PC链中的热源衍生化学结构,以及来自亚磷酸酯抗氧化剂的衍生物引发严重的水解降解。 〜1H-NMR分析表明,连接到BPA单元的碳酸盐基团最易于水解,其次是1α和CHDM单元,表明单体的酸度在聚碳酸酯的水解降解中起着关键作用。残留催化剂可能在BPA-PC / ICC-PC反应性共混物中引起显着的水解。水解更喜欢在ISB单元的EXO位置发生,具有低空间障碍,而不是高亲电子性的endo位置,表明残留催化剂充当路易斯酸,并且可能通过配位机制促进水解。具有Na基催化剂的BPA-PC / ICC-PC共混物的耐水解性低于K-和Cs基催化剂的共混物,因为具有强的配位能力。

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