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A three-dimensional Au nanoparticle–monolayer graphene–Ag hexagon nanoarray structure for high-performance surface-enhanced Raman scattering

机译:用于高性能表面增强拉曼散射的三维金纳米粒子-单层石墨烯-银六边形纳米阵列结构

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Integration of graphene with plasmonic metal nanoparticles (NPs) holds great promise for constructing high-performance surface-enhanced Raman scattering (SERS) substrates. Here, we fabricate an artificial three-dimensional (3D) SERS substrate by assembling Au NPs on graphene supported with electron beam lithography-fabricated Ag hexagon nanoarrays (HNAs). Through modulation of the structures to sufficiently narrow interparticle spaces, we have created high-density sub-10 nm gaps between the horizontally patterned Ag hexagons with an excellent uniformity. Moreover, nanometer-scale gaps were formed with the successful embedding of monolayer graphene (1LG) between Au NPs and Ag HNAs. Finite element numerical simulations revealed the electric field enhancement effect for the 3D hybrid system with a maximum of 107 due to the multi-dimensional plasmonic couplings including Au NP–Au NP, Au NP–Ag hexagon and Ag hexagon–Ag hexagon couplings. By combining the SERS activity and high order of Ag HNAs, the chemical stability of Au, and the single-atomic thickness of graphene, the fabricated 3D Au NP–1LG–Ag HNA structure exhibits a 3107-fold enhancement of the Raman response of graphene and high SERS sensitivity with a detection limit down to 0.1 pM for Rhodamine 6G molecules, as well as good reliability and stability. In addition, the 3D SERS substrate facilitated the simultaneous detection of both Rhodamine 6G and crystal violet molecules. This work represents a step towards high-performance SERS substrate fabrication, and opens a new window to the rational design of graphene–plasmonic hybrids for SERS applications.
机译:石墨烯与等离激元金属纳米颗粒(NPs)的集成为构建高性能表面增强拉曼散射(SERS)衬底提供了广阔的前景。在这里,我们通过在用电子束光刻法制备的Ag六角形纳米阵列(HNA)支撑的石墨烯上组装Au NPs来制造人工三维(3D)SERS衬底。通过将结构调制为足够窄的粒子间空间,我们在水平构图的Ag六边形之间创建了具有出色均匀性的高密度亚10纳米间隙。此外,成功地在Au NP和Ag HNA之间嵌入了单层石墨烯(1LG),形成了纳米级间隙。有限元数值模拟显示,由于多维等离子耦合,包括Au NP–Au NP,Au NP–Ag六角形和Ag六角形-Ag六角形耦合,最大3混合系统的电场增强效果为107。通过结合SERS活性和高水平的Ag HNAs,Au的化学稳定性以及石墨烯的单原子厚度,制造的3D Au NP-1LG-Ag HNA结构显示出石墨烯拉曼响应的3107倍增强和高SERS灵敏度,若丹明6G分子的检测限低至0.1 pM,并且具有良好的可靠性和稳定性。此外,3D SERS底物有助于同时检测罗丹明6G和结晶紫分子。这项工作代表了向高性能SERS基板制造迈出的一步,并为合理设计SERS应用的石墨烯-等离子体混合体打开了新的窗口。

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