首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and characterization of polystyrene-graphite nanocomposites via surface RAFT-mediated miniemulsion polymerization
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Synthesis and characterization of polystyrene-graphite nanocomposites via surface RAFT-mediated miniemulsion polymerization

机译:表面RAFT介导的细乳液聚合法合成聚苯乙烯-石墨纳米复合材料及其表征

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摘要

Graphite oxide (GO) was prepared and immobilized with dodecyl isobutyric acid trithiocarbonate (DIBTC) reversible addition-fragmentation chain transfer (RAFT) agent. The hydroxyl groups of GO were attached to the DIBTC RAFT agent through an esterification process. The resultant modified GO was used for the preparation of polystyrene (PS)/graphite nanocomposites in miniemulsion polymerization. The RAFT-grafted GO (GO-DIBTC) at various loadings was dispersed in styrene monomer, and the resultant mixtures were sonicated in the presence of a surfactant (sodium dodecylbenzene sulfonate) and a hydrophobe (hexadecane) to form miniemulsions. The stable miniemulsions thus obtained were polymerized using azobisisobutyronitrile as the initiator to yield encapsulated PS-GO nanocomposites. The molar mass and polydispersity index of PS in the nanocomposites depended on the amount of RAFT-grafted GO in the system, in accordance with the features of the RAFT polymerization method. The PS-GO nanocomposites were of exfoliated morphology, as confirmed by X-ray diffraction and transmission electron microscopy measurements. The thermal stability and mechanical properties of the PS-GO nanocomposites were better than those of the neat PS polymer. Furthermore, the mechanical properties were dependent on the modified GO content (i.e., the amount of RAFT-grafted GO).
机译:制备氧化石墨(GO),并用十二烷基异丁酸三硫代碳酸酯(DIBTC)可逆加成-断裂链转移(RAFT)试剂固定。 GO的羟基通过酯化过程连接至DIBTC RAFT剂。所得的改性GO用于细乳液聚合中制备聚苯乙烯(PS)/石墨纳米复合材料。将RAFT接枝的GO(GO-DIBTC)以各种负载分散在苯乙烯单体中,并将​​所得混合物在表面活性剂(十二烷基苯磺酸钠)和疏水物(十六烷)的存在下进行超声处理以形成细乳液。使用偶氮二异丁腈作为引发剂聚合由此获得的稳定的细乳液,以产生封装的PS-GO纳米复合材料。根据RAFT聚合方法的特点,纳米复合物中PS的摩尔质量和多分散性指数取决于体系中RAFT接枝的GO的量。如通过X射线衍射和透射电子显微镜测量所证实的,PS-GO纳米复合材料具有剥离的形态。 PS-GO纳米复合材料的热稳定性和机械性能优于纯PS聚合物。此外,机械性能取决于改性的GO含量(即,RAFT接枝的GO的量)。

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