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Construction of a Different Polymer Chain Structure to Study π-π Interaction between Polymer and Reduced Graphene Oxide

机译:研究聚合物与还原氧化石墨烯之间π-π相互作用的不同聚合物链结构的构建

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摘要

In this work, a different polymer chain structure was synthesized to study π-π interactions between polymer and reduced graphene oxide (RGO). Polymers with different chain structures were obtained from free radical copolymerization of styrene with 4-cyanostyrene (containing substituted phenyl rings) and 2-vinylnaphthalene (containing naphthalene rings). In this work, the polystyrene, poly(styrene-co-4-cyanostyrene) and poly(styrene-co-2-vinylnaphthalene) were named as PS, PSCN and PSNP, respectively. RGO was prepared through modified Hummers’ method and further thermal reduction, and nanocomposites were prepared by solution blending. Thus, different π-π interactions were formed between polymers and RGO. Raman and thermal gravimetric analysis (TGA) were used to characterize the interfacial interaction, showing that the trend of the interfacial interaction should be in the order of RGO/PSCN, RGO/PS, and RGO/PSNP. The differential scanning calorimetry (DSC) measurement showed that, compared with polymer matrix, the glass transition temperature (Tg) of RGO/PS, RGO/PSCN and RGO/PSNP nanocomposites with the addition of 4.0 wt% RGO are increased by 14.3 °C, 25.2 °C and 4.4 °C, respectively. Compared with π-π interaction only formed through aromatic rings, substituent groups changed the densities of electron clouds on the phenyl rings. This change resulted in the formation of donor-acceptor interaction and reinforcement of the π-π interaction at the interface, which leads to increased value of Tg. This comparative study can be useful for selecting appropriate interaction groups, as well as suitable monomers, to prepare high performance nanocomposites.
机译:在这项工作中,合成了不同的聚合物链结构以研究聚合物与还原氧化石墨烯(RGO)之间的π-π相互作用。苯乙烯与4-氰基苯乙烯(含有取代的苯环)和2-乙烯基萘(含有萘环)的自由基共聚可得到具有不同链结构的聚合物。在这项工作中,聚苯乙烯,聚(苯乙烯-co-4-氰基苯乙烯)和聚(苯乙烯-co-2-乙烯基萘)分别命名为PS,PSCN和PSNP。 RGO是通过改良的Hummers方法和进一步的热还原法制备的,而纳米复合材料是通过溶液共混制备的。因此,在聚合物和RGO之间形成了不同的π-π相互作用。拉曼和热重分析(TGA)用来表征界面相互作用,表明界面相互作用的趋势应按RGO / PSCN,RGO / PS和RGO / PSNP的顺序排列。差示扫描量热法(DSC)测量表明,与聚合物基质相比,RGO / PS,RGO / PSCN和RGO / PSNP纳米复合材料(添加4.0 wt%RGO)的玻璃化转变温度(Tg)提高了14.3°C。 ,25.2°C和4.4°C。与仅通过芳香环形成的π-π相互作用相比,取代基会改变苯环上电子云的密度。这种变化导致在界面上形成供体-受体相互作用并增强了π-π相互作用,从而导致Tg值增加。这项比较研究可用于选择合适的相互作用基团以及合适的单体来制备高性能纳米复合材料。

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