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Surface-enhanced Raman spectral study of Au nano-particles/alkanethiol self-assembled monolayers/Au(111) hetero structures

机译:金纳米粒子/烷硫醇自组装单层/ Au(111)异质结构的表面增强拉曼光谱研究

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This paper describes Raman spectroscopic investigations of octadecane-thiol (C18H37-SH; OD-mT) and octane-dithiot (HS-C8H16-SH; O-dT) self-assembled monolayers (SAMs) on an epitaxial Au(111)/cleaved-mica substrate. The epitaxial Au(111) substrate having nanometer-scale domains increases the enhanced Raman signals of SAMs, whereas the Raman bands are much less intense on the micrometer-scale domains of Au(111). The Raman intensity of the v(s)(CH2) band is increased for depositions above 4 nm, and takes a maximum at a thickness of 9 nm when gold is vacuum-deposited on the OD-mT SAMs that are formed on micrometer-scale domains. For the O-dT SAMs, Raman band intensity profiles show two features at gold thicknesses of 2 and 9 nm; the latter intensity is about three times greater than that of the former. Atomic force microprobe (AFM) images reveal that 20-30-nanometer-scale islands are formed by 9 nm gold deposition for both SAMs. In contrast, 2 nm gold deposition onto the O-dT SAMs creates striped nanostructures (ca. 7 nm in spacing). The results suggest that the specific nanostructures formed by post-deposition of gold serve to enhance the SAMs Raman signals. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文描述了在外延Au(111)/裂解的外延上十八烷硫醇(C18H37-SH; OD-mT)和辛烷二硫辛(HS-C8H16-SH; O-dT)自组装单层(SAMs)的拉曼光谱研究-云母基底。具有纳米级域的外延Au(111)衬底增加了SAM的增强拉曼信号,而在Au(111)的微米级域上,拉曼带的强度要小得多。在4 nm以上的沉积中,v(s)(CH2)带的拉曼强度增加,当金真空沉积在微米级形成的OD-mT SAM上时,厚度为9 nm时拉曼强度最大域。对于O-dT SAM,拉曼能带强度曲线在金的厚度为2和9 nm时显示出两个特征。后者的强度大约是前者的三倍。原子力探针(AFM)图像显示,两个SAM的9 nm金沉积形成了20-30纳米级的岛。相反,在O-dT SAM上沉积2 nm的金会形成条纹状的纳米结构(间距约为7 nm)。结果表明,通过金的后沉积形成的特定纳米结构可增强SAMs拉曼信号。 (c)2006 Elsevier B.V.保留所有权利。

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