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As-grown graphene/copper nanoparticles hybrid nanostructures for enhanced intensity and stability of surface plasmon resonance

机译:生长中的石墨烯/铜纳米颗粒杂化纳米结构可增强表面等离子体共振的强度和稳定性

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摘要

The transfer-free fabrication of the high quality graphene on the metallic nanostructures, which is highly desirable for device applications, remains a challenge. Here, we develop the transfer-free method by direct chemical vapor deposition of the graphene layers on copper (Cu) nanoparticles (NPs) to realize the hybrid nanostructures. The graphene as-grown on the Cu NPs permits full electric contact and strong interactions, which results in a strong localization of the field at the graphene/copper interface. An enhanced intensity of the localized surface plasmon resonances (LSPRs) supported by the hybrid nanostructures can be obtained, which induces a much enhanced fluorescent intensity from the dye coated hybrid nanostructures. Moreover, the graphene sheets covering completely and uniformly on the Cu NPs act as a passivation layer to protect the underlying metal surface from air oxidation. As a result, the stability of the LSPRs for the hybrid nanostructures is much enhanced compared to that of the bare Cu NPs. The transfer-free hybrid nanostructures with enhanced intensity and stability of the LSPRs will enable their much broader applications in photonics and optoelectronics.
机译:在器件应用中非常需要在金属纳米结构上无转移地制造高质量石墨烯,这仍然是一个挑战。在这里,我们通过在铜(Cu)纳米颗粒(NPs)上直接化学气相沉积石墨烯层来开发无转移方法,以实现杂化纳米结构。在铜纳米颗粒上生长的石墨烯允许完全的电接触和强烈的相互作用,这导致在石墨烯/铜界面处的电场很强的局部化。可以获得由杂化纳米结构支持的增强的局部表面等离子体共振(LSPR)的强度,其从染料涂覆的杂化纳米结构中诱导出大大增强的荧光强度。此外,完全均匀地覆盖在铜纳米颗粒上的石墨烯片充当钝化层,以保护下面的金属表面免受空气氧化。结果,与裸Cu NP相比,杂化纳米结构的LSPR的稳定性大大提高。 LSPR具有增强的强度和稳定性的无转移杂化纳米结构将使其在光子学和光电子学中的应用更加广泛。

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