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Synthesis and characterization of poly(methyl methacrylate)/graphene-based thermally expandable microcapsules

机译:聚(甲基丙烯酸甲酯)/石墨烯的热膨胀微胶囊的合成与表征

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Graphene oxide (GO) was prepared via Hummers' method and reduced by hydrazine monohydrate. GO was modified with (3-methacryloxypropyl)triethoxysilane (MPS) and the obtained GO-MPS nanosheets were reduced by hydrazine monohydrate. The different modified nanosheets were utilized to fabricate microballoons based on methyl methacrylate-triethylene glycol dimethacrylate (TEGDMA) copolymer having a core/shell structure which contained pentane as a blowing agent. To investigate the effect of the presence of nanosheets on the properties of microballoons, gel point occurrence, initial pentane content and the remained pentane during expansion, the expansion properties, and the particle morphology were studied. Kinetic studies showed that GO and GO-MPS accelerated polymerization, whereas the reduced nanosheets exhibited a retardation effect on kinetics. The microballoons containing GO and GO-MPS encapsulated more pentane and effectively retained it during the expansion process. Also, higher pentane content led to lower density of synthesized nanocomposites whereas improved expansion properties were achieved. According to the scanning electron microscopy images, due to retardation effect of reduced graphene oxide (rGO) and rGO-MPS nanosheets, the shell surrounding the hydrocarbon in the microballoons contained more defects which could accelerate penetration of pentane through the shell. This resulted in a less expansion for the microballoons having poly(methyl methacrylate) (PMMA)/rGO or PMMA/rGO-MPS shells compared to those having PMMA/GO or PMMA/GO-MPS shells. POLYM. COMPOS., 39:950-960, 2018. (c) 2016 Society of Plastics Engineers
机译:石墨烯氧化物(GO)通过悍马的方法制备,并通过肼一水合物减少。 GO含有(3-甲基丙烯酸丙烯氧基丙基)三乙氧基硅烷(MPS),并通过肼一水合物减少所得的GO-MPS纳米片。使用不同的改性纳米片基于甲基丙烯酸甲酯 - 三乙二醇二甲基丙烯酸甲酯(TEGDMA)共聚物制备微丙烯酸甲酯(TEGDMA)共聚物,其具有含有戊烷作为发泡剂的芯/壳结构。为了研究纳米片对稀释剂,凝胶点出现,初始戊烷含量和剩余戊烷的影响,研究了膨胀性,膨胀性能,膨胀性能和颗粒形态学的效果。动力学研究表明,GO和GO-MPS加速聚合,而还原纳米蛋白酶对动力学表现出延迟效应。含有GO和GO-MPS的微量球块封装了更多的戊烷,并在膨胀过程中有效地保留了它。此外,较高戊烷含量导致合成纳米复合材料的较低密度,而达到了改进的膨胀性能。根据扫描电子显微镜图像,由于石墨烯氧化物(RGO)和RGO-MPS纳米片的延迟效果,围绕微烃中烃的壳体含有更多的缺陷,可以加速戊烷通过壳体的渗透。与具有PMMA / GO或PMMA / GO-MPS壳相比,具有聚(甲基丙烯酸甲酯)(PMMA)/ RGO或PMMA / RGO-MPS壳的微量恶体的扩增较小。聚合物。 Compos。,39:950-960,2018。(c)2016塑料工程师协会

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