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首页> 外文期刊>Journal of Applied Polymer Science >Investigation of crystallization of PVCH-PE-PVCH triblock copolymer in supercritical carbon dioxide
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Investigation of crystallization of PVCH-PE-PVCH triblock copolymer in supercritical carbon dioxide

机译:PVCH-PE-PVCH三嵌段共聚物在超临界二氧化碳中的结晶研究

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摘要

Crystallization of glassy-crystalline-glassy poly(vinylcyclohexane)-b-polyethylene-b-poly(vinylcyclohexane) (PVCH-PE-PVCH) triblock copolymer treated in supercritical Carbon Dioxide (scCO(2)) was investigated by using differential scanning calorimetry (DSC) and atomic force microscope (AFM). It was found that the melting temperatures (T-m) and the crystallinity (X-c) of the PVCH-PE-PVCH samples treated in scCO(2) at different annealing temperatures (T) were all much higher than those of the untreated PVCH-PE-PVCH, indicating that the scCO(2) could effectively induce the samples to further crystallize. With increasing the T, the T-m of the samples linearly increased, even up to 108 degrees C, close to the T-m (similar to 110 degrees C) of the PE homopolymer hydrogenated from polybutadiene which is equal to the PE block in the triblock copolymer. The results could be ascribed to the released PE chain ends linked to the PVCH block due to the lowered T-g of the PVCH block swollen by scCO(2). It suggested that the origin of the confined crystallization in PVCH-PE-PVCH was the fixed PE chain ends by the glassy PVCH. AFM images of the samples treated in scCO(2) showed that the PVCH lamella phase tended to connect each other and led to the aggregated structures. The result indicated that the PVCH block could be availably swollen by scCO(2). It supported the DSC experiment results of the samples treated in scCO(2.) (c) 2006 Wiley Periodicals, Inc.
机译:使用差示扫描量热法(scCO(2))研究了在超临界二氧化碳(scCO(2))中处理的玻璃态-结晶-玻璃态的聚(乙烯基环己烷)-b-聚乙烯-b-聚(乙烯基环己烷)(PVCH-PE-PVCH)三嵌段共聚物。 DSC)和原子力显微镜(AFM)。发现在scCO(2)中在不同退火温度(T)下处理的PVCH-PE-PVCH样品的熔融温度(Tm)和结晶度(Xc)均比未处理的PVCH-PE-高得多。 PVCH,表明scCO(2)可以有效地诱导样品进一步结晶。随着T的增加,样品的T-m线性增加,甚至达到108摄氏度,接近于从聚丁二烯氢化的PE均聚物的T-m(类似于110摄氏度),它等于三嵌段共聚物中的PE嵌段。结果可能归因于与scvc(2)溶胀的pvch嵌段的T-g降低,从而释放了与pvch嵌段连接的PE链末端。这表明,PVCH-PE-PVCH中有限结晶的起源是玻璃状PVCH固定的PE链端。在scCO(2)中处理的样品的AFM图像显示,PVCH薄片相倾向于相互连接并导致聚集的结构。结果表明,scCO(2)可以有效地膨胀PVCH块。它支持在scCO(2。)(c)2006 Wiley Periodicals,Inc.中处理的样品的DSC实验结果。

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