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Universal Method for Producing Reduced Graphene Oxide/Gold Nanoparticles Composites with Controlled Density of Grafting and Long-Term Stability

机译:具有控制的接枝密度和长期稳定性的还原型氧化石墨烯/金纳米颗粒复合材料的通用生产方法

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摘要

In this study, we report a universal approach allowing the non-covalent deposition of gold nanoparticles on reduced graphene oxide surface in a controlled fashion. We used a modified Hummers method to obtain graphene oxide, which then underwent surficial functionalization with carboxyl moieties coupled with simultaneous reduction. Nanoparticles were synthesized ex-situ and capped with a thiolated poly-ethylene glycol (PEG) ligand. The interactions between the surface of modified graphene oxide and nanoparticle ligands enabled the formation of stable hybrid graphene-nanoparticles materials in the aqueous phase. Using this technique, we were able to cover the surface of graphene with gold nanoparticles of different shapes (spheres, rods, triangles, stars, and bipyramids), broad range of sizes (from 5 nm to 100 nm) and controlled grafting densities. Moreover, materials obtained with this strategy exhibited long-term stability, which coupled with the versatility and facility of preparation, makes our technique appealing in the light of increasing demand for new graphene-based hybrid nanostructures.
机译:在这项研究中,我们报告了一种通用方法,该方法允许以受控方式在还原的氧化石墨烯表面上非共价沉积金纳米颗粒。我们使用改良的Hummers方法获得氧化石墨烯,然后将其与羧基部分进行表面官能化并同时还原。异位合成纳米颗粒,并用硫醇化聚乙二醇(PEG)配体封端。改性氧化石墨烯表面与纳米粒子配体之间的相互作用使得能够在水相中形成稳定的杂化石墨烯-纳米粒子材料。使用这种技术,我们能够用不同形状(球形,棒形,三角形,星形和双锥体),尺寸范围很广(从5 nm到100 nm)和受控接枝密度的金纳米颗粒覆盖石墨烯的表面。此外,通过这种策略获得的材料具有长期稳定性,再加上多功能性和制备便利性,鉴于对新的基于石墨烯的杂化纳米结构的需求不断增加,使我们的技术具有吸引力。

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