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One-process fabrication of metal hierarchical nanostructures with rich nanogaps for highly-sensitive surface-enhanced Raman scattering

机译:具有高度纳米间隙的金属分层纳米结构的一站式制造,用于高度敏感的表面增强拉曼散射

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摘要

One-process fabrication of highly active and reproducible surface-enhanced Raman scattering (SERS) substrates via ion beam deposition is reported. The fabricated metal-dielectric-metal (MDM) hierarchical nanostructure possesses rich nanogaps and a tunable resonant cavity. Raman scattering signals of analytes are dramatically strengthened due to the strong near-field coupling of localized surface plasmon resonances (LSPRs) and the strong interaction of LSPRs of metal NPs with surface plasmon polaritons (SPPs) on the underlying metal film by crossing over the dielectric spacer. The maximum Raman enhancement for the highest Raman peak at 1650 cm(-1) is 13.5 times greater than that of a single metal nanoparticle (NP) array. Moreover, the SERS activity can be efficiently tailored by varying the size and number of voids between adjacent metal NPs and the thickness of the dielectric spacer. These findings may broaden the scope of SERS applications of MDM hierarchical nanostructures in biomedical and analytical chemistry.
机译:报道了通过离子束沉积的高活性和可再现的表面增强拉曼散射(SERS)衬底的单过程制造。制成的金属-电介质-金属(MDM)分层纳米结构具有丰富的纳米间隙和可调的谐振腔。由于局部表面等离振子共振(LSPR)的强近场耦合以及下层金属膜上金属NP的LSPR与表面等离激元极化子(SPP)的强相互作用,通过跨过电介质,大大增强了分析物的拉曼散射信号垫片。最大拉曼峰在1650 cm(-1)处的最大拉曼增强比单个金属纳米颗粒(NP)阵列的拉曼增强大13.5倍。此外,可以通过改变相邻金属NP之间的空隙的大小和数量以及介电垫片的厚度来有效地调整SERS活性。这些发现可能会拓宽MDM分级纳米结构在生物医学和分析化学领域的SERS应用范围。

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