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Preparation of graphene and inclusion in composites with poly(styrene- b-butadiene- b-styrene)

机译:石墨烯的制备及其与聚(苯乙烯- b -丁二烯- b -苯乙烯的复合材料中的包裹体)

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The aim of this work was to prepare and characterize nanocomposites containing graphene from intercalated graphite. The graphene was produced by rapid thermal expansion using expandable graphite oxide or obtained commercially. The polymer used was poly(styrene- b -butadiene- b -styrene) (SBS). The SBS was dissolved in p -xylene and the graphene was ultrasonically suspended in the xylene solution. The morphology, dynamic mechanical, electrical, and thermal properties of composites were characterized. Graphene at 1% (w/w) (hydrogen atmosphere) was found to increase the storage modulus (68%) and loss modulus (147%) of the glassy state of polybutadiene in SBS. The damping factor of SBS was enhanced by 74% corresponding to the polystyrene phase of SBS using Cheap Tubes graphene. The composites were insulators at 1% (w/w). The styrene groups in SBS strongly adsorb onto the graphenes, preventing a percolation network that would enhance electrical permittivity. Graphene enhanced physical crosslinks of the polystyrene phase to increase the modulus at low concentration. Graphene dispersion using ultrasonic shear depended on π-π interactions between the aromatic rings of the solvent, graphene, and polystyrene. This is a simple, fast, cheap, and scalable way of making high-quality graphene and a new way of graphene dispersal in polymers.
机译:这项工作的目的是从插层石墨制备和表征含有石墨烯的纳米复合材料。所述石墨烯是通过使用可膨胀的氧化石墨通过快速热膨胀来生产的,或者是商购获得的。使用的聚合物是聚(苯乙烯-b-丁二烯-b-苯乙烯)(SBS)。将SBS溶解在对二甲苯中,并将石墨烯超声悬浮在二甲苯溶液中。表征了复合材料的形态,动态力学,电学和热学性质。发现在1%(w / w)(氢气氛)下的石墨烯增加了SBS中聚丁二烯的玻璃态的储能模量(68%)和损耗模量(147%)。使用Cheap Tubes石墨烯,SBS的阻尼系数与SBS的聚苯乙烯相相对应提高了74%。复合材料是1%(w / w)的绝缘体。 SBS中的苯乙烯基团强烈吸附到石墨烯上,从而防止了会增加介电常数的渗滤网络。石墨烯增强了聚苯乙烯相的物理交联,从而增加了低浓度下的模量。使用超声剪切的石墨烯分散取决于溶剂,石墨烯和聚苯乙烯的芳环之间的π-π相互作用。这是一种制备高质量石墨烯的简单,快速,廉价且可扩展的方法,也是一种将石墨烯分散在聚合物中的新方法。

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