首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Out-of-Plane Directional Charge Transfer-Assisted Chemical Enhancement in the Surface-Enhanced Raman Spectroscopy of a Graphene Monolayer
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Out-of-Plane Directional Charge Transfer-Assisted Chemical Enhancement in the Surface-Enhanced Raman Spectroscopy of a Graphene Monolayer

机译:石墨烯单层表面增强拉曼光谱中的面外定向电荷转移辅助化学增强

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摘要

We present an out-of-plane directional charge transfer (CT)-assisted chemical enhancement (CM) in the surface-enhanced Raman scattering (SERS) of a graphene monolayer (GM) sandwiched at an individual Au prism-Au thin film (TF) plasmonic junction. By comparing previous reports, in which the enhancement of out-of-plane phonon modes of a GM was mostly governed by z-directional local field formed at a Au nanoparticle (NP) Au TF junction, we can reveal that a CT-assisted CM along the z-direction has a pivotal role by enhancing radial breathing-like mode (RBLM) intensity at face-to-face junction types. The anticorrelation between 2D and RBLM intensity from ridge to flat domains of an Au prism indicates that a plasmonic EM effect is not a critical element at flat domain, whereas the RBLM intensity is strongly enhanced at face-to-face junction. Furthermore, the closest GM from a z-axis has a significant role based on vector-based investigation in enhancing CT-assisted CM effect between Au prism and TF. These phenomena may be interpreted by (1) introducing the coupling of the plasmon modes of a metallic nanostructure, especially interaction between dipolar and quadrupolar modes and their interference with a large contact area of flat compared to ridge from an Au prism adjacent to the dielectric GM at a face-to-face junction by hot (or ballistic) electrons (Fano-like resonance) and (2) the electrons present at flat Au faces may have a high probability to generate CT in terms of relatively large portion of homogeneous electron distribution than sphere, leading to secure a large amount of CT electrons. Moreover, (3) close to the surface-to-normal direction of GM, we can reveal that CT along the z-axis is more favorable than the tilted. These interpretations offer an opportunity to study the mechanism of CT-assisted CM in detail and for optimizing the sensitivity of nanostructures in terms of Fano resonance and the resulting high performance localized surface plasmon resonance (LSPR) sensors.
机译:我们提出了夹在单个Au棱镜-Au薄膜(TF)中的石墨烯单层(GM)的表面增强拉曼散射(SERS)中的面外定向电荷转移(CT)辅助化学增强(CM) )等离子结。通过比较以前的报道,其中GM的平面外声子模的增强主要受在Au纳米颗粒(NP)Au TF结处形成的z方向局部场控制,我们可以发现CT辅助CM沿z方向的运动通过增强面对面连接类型的径向呼吸样模式(RBLM)强度具有关键作用。二维和RBLM强度从Au棱镜的脊到平坦域之间的反相关性表明,等离子EM效应不是平坦域中的关键元素,而RBLM强度在面对面连接处被大大增强。此外,基于z轴的最接近的GM在基于矢量的研究中在增强Au棱镜和TF之间的CT辅助CM效果方面具有重要作用。这些现象可以通过以下方式解释:(1)引入金属纳米结构的等离振子模式的耦合,特别是偶极和四极模式之间的相互作用,以及与邻近电介质GM的金棱镜的脊相比,它们对大平面接触面积的干扰在热电子(或弹道电子)的面对面连接处(类Fano共振),以及(2)存在于平坦Au面上的电子有很大的可能性产生CT,这是因为相对均匀的电子分布比例相对较大而不是球形,从而确保了大量CT电子的安全。此外,(3)接近GM的表面法线方向,我们可以揭示出沿z轴的CT比倾斜的CT更有利。这些解释为详细研究CT辅助CM的机理以及优化纳米结构在Fano共振和由此产生的高性能局部表面等离子体激元共振(LSPR)传感器方面的敏感性提供了机会。

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