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Interactive Oxidation-Reduction Reaction for the in Situ Synthesis of Graphene-Phenol Formaldehyde Composites with Enhanced Properties

机译:交互式氧化还原反应原位合成性能增强的石墨烯-苯酚甲醛复合材料

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摘要

We report a facile in situ synthesis of reduced graphene oxide (RGO)-phenol formaldehyde (PF) composites with an interactive oxidation—reduction reaction. In this interactive chemical reaction, graphene oxide (GO) was reduced to RGO by phenol, and simultaneously phenol was oxidized to benzoquinone. The noncovalently adsorbed phenol on the RGO surface can not only serve as an effective reductant but also participate in the in situ polymerization and guide the formation of PF on the RGO surface. RGO-PF composites with different RGO contents were prepared successfully and further characterized with fluorescent spectroscopy, scanning electron microscopy, and transmission electron microscopy. The mechanical strength, electrical conductivity, thermal conductivity, and thermal resistance of the created RGO-PF were investigated. The results indicated that the dispersity of RGO in the PF matrix and the interfacial interaction between RGO and PF were improved greatly because of formation of the RGO-PF hybrid in the in situ synthesis. The homogeneous dispersion and in situ polymerization of RGO sheets help to enhance the thermal conductivity of RGO-PF composites from 0.1477 to 0.3769 W m~(-1) K~(-1) and endow the composites with a good electrical conductivity. In addition, the well-dispersed RGO-PF composites are much more effective in improving their mechanical property and heat resistance.
机译:我们报告了一种具有交互氧化还原反应的还原性氧化石墨烯(RGO)-苯酚甲醛(PF)复合材料的简便原位合成。在该相互作用的化学反应中,氧化石墨烯(GO)被苯酚还原为RGO,同时苯酚被氧化为苯醌。 RGO表面上非共价吸附的苯酚不仅可以用作有效的还原剂,还可以参与原位聚合并指导RGO表面上PF的形成。成功制备了不同RGO含量的RGO-PF复合材料,并通过荧光光谱,扫描电子显微镜和透射电子显微镜对其进行了表征。研究了所创建的RGO-PF的机械强度,电导率,热导率和热阻。结果表明,由于RGO-PF杂化体在原位合成中的形成,大大提高了RGO在PF基体中的分散性以及RGO与PF之间的界面相互作用。 RGO片材的均匀分散和原位聚合有助于将RGO-PF复合材料的导热系数从0.1477 W m〜(-1)K〜(-1)提高到0.3769 W m〜(-1)K〜(-1),并赋予其良好的导电性。此外,分散良好的RGO-PF复合材料在改善其机械性能和耐热性方面更为有效。

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