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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis and application of styrene/4-hydroxystyrene gradient copolymers made by controlled radical polymerization: Compatibilization of immiscible polymer blends via hydrogen-bonding effects
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Synthesis and application of styrene/4-hydroxystyrene gradient copolymers made by controlled radical polymerization: Compatibilization of immiscible polymer blends via hydrogen-bonding effects

机译:受控自由基聚合制备的苯乙烯/ 4-羟基苯乙烯梯度共聚物的合成和应用:通过氢键作用使不混溶的聚合物共混物相容

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Styrene (S)/4-hydroxystyrene (HS) copolymers are synthesized by hydrolysis of S/4-acetoxystyrene copolymer precursors; two gradient copolymer precursors are made by semi-batch, nitroxide-mediated controlled radical polymerization, and a random copolymer precursor is prepared by conventional free radical polymerization. Conventional heat curves from differential scanning calorimetry indicate two glass transition temperatures (T(g)s) and a broad T-g in well-annealed 59/41 mol% and 25/75 mol% S/HS gradient copolymers, respectively, both of which contain short S end-blocks. In contrast, a narrow Tg is observed in a 57/43 mol% random copolymer. Each S/HS copolymer is added at 5 wt% by solution mixing to an 80/20 wt% polystyrene (PS)/polycaprolactone (PCL) blend and tested for its ability to compatibilize the blend during melt processing; the hydroxyl groups on the HS units can form hydrogen bonds with the PCL ester groups. The S/HS random copolymer fails as a compatibilizer while both gradient copolymers are good compatibilizers. Relative to the blend without copolymer, the blend with 59/41 mol% S/HS gradient copolymer also exhibits a major reduction in initial dispersed-phase domain size and irregularly shaped domains, which are indicators of a sharply reduced interfacial tension. In contrast, the blend with 25/75 mol% S/HS gradient copolymer has an average PCL domain size comparable to the blend without copolymer and a broad domain size distribution. The presence of S/HS copolymers in the blend leads to reduced PCL crystallization and melting temperatures as well as reduced enthalpies of crystallization and melting, consistent with some solubilization of copolymer in the PCL domain interiors. (c) 2006 Elsevier Ltd. All rights reserved.
机译:苯乙烯(S)/ 4-羟基苯乙烯(HS)共聚物是通过S / 4-乙酰氧基苯乙烯共聚物前体的水解合成的。通过半间歇,氮氧化物介导的受控自由基聚合制备两种梯度共聚物前体,并通过常规自由基聚合制备无规共聚物前体。来自差示扫描量热法的常规热曲线表明,在经过充分退火的59/41 mol%和25/75 mol%S / HS梯度共聚物中,两个玻璃化转变温度(T(g)s)和宽的Tg均包含短的S末端嵌段。相反,在57 / 43mol%的无规共聚物中观察到窄的Tg。通过溶液混合将每种S / HS共聚物以5 wt%的量添加到80/20 wt%的聚苯乙烯(PS)/聚己内酯(PCL)混合物中,并测试其在熔融加工过程中使混合物相容的能力; HS单元上的羟基可与PCL酯基形成氢键。 S / HS无规共聚物不能用作增容剂,而两种梯度共聚物都是很好的增容剂。相对于没有共聚物的共混物,具有59/41 mol%S / HS梯度共聚物的共混物还表现出初始分散相畴尺寸和不规则形状畴的显着减小,这是界面张力急剧降低的指标。相反,具有25 / 75mol%的S / HS梯度共聚物的共混物具有与没有共聚物的共混物相当的平均PCL域尺寸,并且具有宽的域尺寸分布。共混物中S / HS共聚物的存在导致PCL结晶和熔融温度降低,以及结晶和熔融焓降低,这与PCL域内部共聚物的某些增溶相一致。 (c)2006 Elsevier Ltd.保留所有权利。

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