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Reduced graphene oxide-stabilized copper nanocrystals with enhanced catalytic activity and SERS properties

机译:用增强型催化活性和SERS性能将石墨烯氧化铋稳定的铜纳米晶体

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摘要

Well-defined Cu/reduced graphene oxide (rGO) hybrid materials are successfully synthesized by controlling the amount of ascorbic acid and maintaining an appropriate pH value. We found that graphene oxide (GO) served not only as the precursor for graphene, but also as an effective surfactant to hamper the aggregation of copper nanoparticles, resulting in a small size of the copper nanoparticles. Furthermore, the as-prepared copper composites can serve as an effective catalyst for 4-nitrophenol in aqueous conditions and exhibit surface enhanced Raman scattering in the detection of crystal violet (CV). Notably, the obtained copper nanoparticle hybrids with rGO have extremely high air stability after exposure to air. Density functional theory calculations firstly reveal that rGO can effectively prevent Cu nanoparticles from spontaneous oxidation due to its slightly lower ionization potential than that of Cu nanoparticles. We expect the as-prepared rGO-stabilized copper nanocrystals with small size to meet the increasing demands of industrial applications at reduced costs.
机译:通过控制抗坏血酸的量并保持适当的pH值,成功地合成了定义的Cu /缩小的氧化石墨烯(RGO)杂化材料。我们发现石墨烯(GO)不仅作为石墨烯的前​​体,而且作为妨碍铜纳米颗粒的聚集的有效表面活性剂,导致铜纳米粒子的小尺寸。此外,当制备的铜复合材料可以用作4-硝基苯酚在水性条件下的有效催化剂,并且在晶体紫(CV)检测中表现出表面增强的拉曼散射。值得注意的是,在暴露于空气后,具有Rgo的获得的铜纳米颗粒杂交物具有极高的空气稳定性。密度函数理论计算首先揭示RGO可以通过其略低低于Cu纳米粒子的电离电位有效地防止Cu纳米颗粒。我们预计AS准备的RGO稳定的铜纳米晶体具有小尺寸,以满足工业应用需求的增加,降低成本。

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