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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Comparison of the Emulsion Mixing and In Situ Polymerization Techniques for Synthesis of Water-Borne Reduced Graphene Oxide/Polymer Composites: Advantages and Drawbacks
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Comparison of the Emulsion Mixing and In Situ Polymerization Techniques for Synthesis of Water-Borne Reduced Graphene Oxide/Polymer Composites: Advantages and Drawbacks

机译:乳液混合和原位聚合技术用于合成水还原的氧化石墨烯/聚合物复合材料的比较:优点和缺点

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Water-borne reduced graphene oxide (rGO)/polymer composites have been synthesized by emulsion mixing and in situ polymerization. The main challenge is to synthesize colloidally stable hybrid latexes that are able to produce composite films by water evaporation at standard atmospheric conditions for their possible application as electrically conductive coatings. The selected polymer system is composed from poly(methyl metacrylate/butyl acrylate) in 50/50 wt% ratio in order to obtain glass transition temperature of the final film lower than the room temperature. The polymer is joined with rGO stable dispersions, which are prepared by reduction of GO in the presence of polyvynil pyrrolidone (PVP). The latex blends are composed of weakly bonded rGO platelets with polymer particles by the presence of PVP, whereas the covalent bonds between the polymers and the rGO in the in situ hybrid latexes are established. Both procedures result in stable hybrid latexes, from which layered composites are obtained by slow water evaporation. The composite blends present better self-organization of rGO, tendency of segregated network formation, and electrically conductive properties. The in situ composites present decreased aggregation of rGO, uniformly distributed rGO in the polymeric matrix and lower conductivity.
机译:水性还原氧化石墨烯(rGO)/聚合物复合材料是通过乳液混合和原位聚合合成的。主要的挑战是合成胶体稳定的混合胶乳,该胶乳能够在标准大气条件下通过水蒸发产生复合膜,从而有可能用作导电涂料。所选择的聚合物体系由聚(甲基丙烯酸甲酯/丙烯酸丁酯)以50/50重量%的比例组成,以使最终膜的玻璃化转变温度低于室温。聚合物与rGO稳定的分散体连接,该分散体是通过在聚乙烯吡咯烷酮(PVP)的存在下还原GO制备的。乳液共混物由存在PVP的弱结合的rGO血小板和聚合物颗粒组成,而在原位杂化乳液中聚合物与rGO之间的共价键得以建立。两种方法均能得到稳定的混合乳胶,通过缓慢的水蒸发可从中获得层状复合材料。复合共混物具有更好的rGO自组织性,形成分离的网络的趋势以及导电性能。原位复合材料呈现出rGO的聚集减少,rGO在聚合物基质中的均匀分布和较低的电导率。

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