AbstractA hydroperoxidized polypropylene (HPP) was obtained by oxidizing PP porous particle in solid p'/> Grafting dual polar monomers onto hydroperoxidized polypropylene with the assistant of supercritical carbon dioxide
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Grafting dual polar monomers onto hydroperoxidized polypropylene with the assistant of supercritical carbon dioxide

机译:用超临界二氧化碳助剂将双极单体接枝到过氧化聚丙烯上

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AbstractA hydroperoxidized polypropylene (HPP) was obtained by oxidizing PP porous particle in solid phase, followed by impregnating dual polar monomers of pentaerythritol triacrylate (PETA) and styrene (St) into the HPP with the aid of supercritical carbon dioxide (scCO2). Then, HPP was used as polymerization initiators and PETA/St were grafted onto microporous PP backbone in water medium. Effects of hydroperoxidation temperature, time, oxidant dosage and PP diameter on hydroperoxides concentration andGpandGewere illustrated systematically. Besides, effects of scCO2swell time, pressure, monomers concentration and ratio, grafting reaction time and temperature onGpandGewere also examined. Results showed thatGpcan be easily controlled by changing process conditions;Gewas observed to be greater than 90% in most of the cases. Gel content of grafted samples was also determined. The structures and thermal properties of grafted copolymers were characterized through FTIR, SEM, TGA and DSC.]]>
机译:<![CDATA [<摘要ID =“ABS1”语言=“EN”OutputMedium =“全部”> <标题>抽象 通过氧化PP获得过氧化聚丙烯(HPP)借助于超临界二氧化碳(SCCO <下标> 2 ,固相中固相中的多孔颗粒,然后将季戊四醇三丙烯酸酮(PETA)和苯乙烯(ST)的双极单体浸渍到HPP中。然后,将HPP用作聚合引发剂,并将PETA / ST接枝到水培养基中的微孔PP主链上。半过氧化温度,时间,氧化剂剂量和PP直径对氢过氧化物浓度的影响及<重点型=“斜体”> G <下标> P 和<重点型=“斜体”> G <下标> E 系统系统地说明。此外,SCCO <下标> 2 膨胀时间,压力,单体浓度和比率,接枝反应时间和温度对<重点型=“斜体”> G <下标> P 还检查了<重点类型=“斜体”> G <下标> E 。结果表明,通过改变过程条件,可以容易地控制<重点类型=“斜体”> G <下标> P ; <重点类型=“斜体”> G <下标> e在大多数情况下,观察到大于90%。还测定了接枝样品的凝胶含量。接枝共聚物的结构和热性能通过FTIR,SEM,TGA和DSC表征。 ]]>

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