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Assembly of polypyrrole-graphene oxide hydrogel nanocomposites and their swelling properties

机译:聚吡咯-氧化石墨烯水凝胶纳米复合材料的组装及其溶胀性能

摘要

An effective one-step strategy for the static assembly of hydrogels from polypyrrole (PPy) and graphene oxide (GO) is demonstrated. The static polymerization of pyrrole monomer was carried out in the presence of GO nanosheets, leading to the formation of PPy-GO hydrogels. During the static polymerization process, gelation takes place simultaneously by supramolecular interactions. The well-dispersed GO nanosheets in the polymer networks resulted in a significant improvement in water absorbencies. With only a very low loading of GO in the PPy-GO hydrogels, they exhibited significantly larger water uptake compared to a PPy hydrogel. Even in saline solutions, PPy-GO hydrogels also showed obvious water absorbency. Moreover, the PPy-GO hydrogels exhibited a better water retention ability compared with the control under the same conditions. This method is believed to provide possibilities to combine the extraordinary performances of GO with the multifunctional properties of conducting polymers, thus holding great potential for technical applications in the future.
机译:从聚吡咯(PPy)和氧化石墨烯(GO)静态组装水凝胶的有效的一步策略被证明。吡咯单体的静态聚合在GO纳米片的存在下进行,导致形成PPy-GO水凝胶。在静态聚合过程中,凝胶化通过超分子相互作用同时发生。聚合物网络中分散良好的GO纳米片材大大提高了吸水性。与PPy水凝胶相比,PPy-GO水凝胶中GO的负载量非常低,因此它们显示出明显更大的吸水率。即使在盐溶液中,PPy-GO水凝胶也显示出明显的吸水性。而且,与相同条件下的对照相比,PPy-GO水凝胶具有更好的保水能力。据信这种方法提供了将GO的非凡性能与导电聚合物的多功能性能相结合的可能性,因此在将来的技术应用中具有很大的潜力。

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