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Nanocomposites of size-controlled gold nanoparticles and graphene oxide: Formation and applications in SERS and catalysis

机译:size-controlled金纳米复合材料纳米颗粒和石墨烯氧化物:形成和在爵士和催化应用

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摘要

In this paper, we describe the formation of Au nanoparticle-graphene oxide (Au-GO) and -reduced GO (Au-rGO) composites by noncovalent attachment of An nanoparticles premodified with 2-mercaptopyridine to GO and rGO sheets, respectively, via π-π stacking and other molecular interactions. Compared with in situ reduction of HAuCl4 on the surface of graphene sheets that are widely used to prepare Au-GO composites, the approach developed by us offers well controlled size, size distribution, and morphology of the metal nanoparticles in the metal-GO nanohybrids. Moreover, we investigated surface enhanced Raman scattering (SERS) and catalysis properties of the Au-graphene composites. We have demonstrated that the Au-GO composites are superior SERS substrates to the Au NPs. Similarly, a comparative study on the catalytic activities of the Au, Au-GO, and Au-rGO composites in the reduction of o-nitroaniline to 1,2-benzenediamine by NaBH4 indicates that both Au-GO and Au-rGO composites exhibit significantly higher catalytic activities than the corresponding Au nanoparticles.
机译:在本文中,我们描述了非盟的形成nanoparticle-graphene氧化物(Au-GO)和减少去(Au-rGO)复合材料通过共价的附件的纳米粒子premodified2-mercaptopyridine去rGO表,分别通过π-π堆积和其他分子相互作用。减少HAuCl4在石墨烯的表面广泛用于准备Au-GO床单复合材料,由我们提供的方法好控制大小,粒度分布,形貌的金属纳米颗粒metal-GO nanohybrids。表面增强喇曼散射(ser)催化Au-graphene的属性复合材料。复合材料优越的ser基质非盟NPs。非盟的催化活动,Au-GO, Au-rGO复合材料的减少o-nitroaniline1, 2-benzenediamine NaBH4表明两种Au-GO和Au-rGO复合材料表现出显著更高的催化活性比相应的Au纳米颗粒。

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