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首页> 外文期刊>Nanoscale >Toward highly sensitive surface-enhanced Raman scattering: the design of a 3D hybrid system with monolayer graphene sandwiched between silver nanohole arrays and gold nanoparticles
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Toward highly sensitive surface-enhanced Raman scattering: the design of a 3D hybrid system with monolayer graphene sandwiched between silver nanohole arrays and gold nanoparticles

机译:对高度敏感的表面增强拉曼散射:3 d混合动力系统的设计单层石墨烯夹在银nanohole数组和金纳米粒子

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We report a novel graphene-metal hybrid system by introducing monolayer graphene between gold nanoparticles (Au NPs) and silver nanohole (Ag NH) arrays. The design incorporates three key advantages to promote the surface-enhanced Raman scattering (SERS) sensing capacity: (i) making full use of the single-atomic feature of graphene for generating uniform sub-nanometer spaces; (ii) maintaining the bottom layer of Ag nanoarrays with an ordered manner for facilitating the transfer of graphene films and assembly of the top layer of Au NPs; (iii) integrating the advantages of the strong plasmonic effect of Ag, the chemical stability of Au, as well as the mechanical flexibility and biological compatibility of graphene. In this configuration, the plasmonic properties can be fine-tuned by separately optimizing the horizontal or vertical gaps between the metal NPs. Exactly, sub-20 nm spaces between the horizontally patterned Ag tips constructed by adjacent Ag NHs, and sub-nanometer scale graphene gaps between the vertically distributed Au NP-Ag NH have been achieved. Finite element numerical simulations demonstrate that the multi-dimensional plasmonic couplings (including the Au NP-Au NP, Au NP-Ag NH and Ag NH-Ag NH couplings) promote for the hybrid platform an electric field enhancement up to 137 times. Impressively, the as-prepared 3D Au NP-graphene-Ag NH array hybrid structure manifests ultrahigh SERS sensitivity with a detection limit of 10(-13) M for R6G molecules, as well as good reproducibility and stability. This work represents a step towards high-performance SERS substrate fabrication, and opens up a new route for graphene-plasmonic hybrids in SERS applications.
机译:我们报告一个小说graphene-metal混合系统引入单层石墨烯之间的黄金纳米颗粒(Au NPs)和银nanohole (Ag)NH)数组。优势促进表面增强拉曼散射(ser)传感能力:(i)石墨烯的原子特性的充分利用生成统一事实上空间;维护Ag纳米阵列的底层对促进有序的方式石墨烯转移电影和组装的非盟NPs顶层;Ag)的强烈的电浆效果的优点,非盟的化学稳定性,以及机械的灵活性和生物石墨烯的兼容性。可以调整电浆性质分别优化水平或垂直金属NPs之间的差距。空间之间的横向花纹Ag)技巧由邻Ag NHs,事实上垂直扩展石墨烯之间的差距取得了分布式非盟NP-Ag NH。有限元数值模拟演示多维电浆联轴器(包括非盟NP-Au NP,非盟NP-Ag NH和Ag)NH-Ag NH联轴器)促进混合动力电场增强137平台次了。NP-graphene-Ag NH数组混合结构体现超高ser敏感性的检出限的10(-13)米R6G分子,以及良好的重现性和稳定性。这个工作代表一个步骤高性能ser衬底制造graphene-plasmonic打开了一个新的途径混合动力车在ser应用程序。

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