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各向异性表面增强拉曼散射在纳米粒子和纳米线阵列中的应用。

Anisotropic surface enhanced Raman scattering in nanoparticle and nanowire arrays.

机构信息

FCIPT, Institute for Plasma Research, Sector-25, Gandhinagar, Gujarat, India.

出版信息

Nanotechnology. 2012 Dec 7;23(48):485307. doi: 10.1088/0957-4484/23/48/485307. Epub 2012 Nov 6.

Abstract

Silver nanoparticles and nanowires self-aligned on pre-patterned rippled substrate are presented as active surface enhanced Raman scattering (SERS) substrates. The reported inter-particle gap of 5 nm and array periodicity of 35 nm are much lower than current lithographic limits. The observed anisotropy in SERS and surface plasmon resonance in such arrays is attributed to different plasmonic field enhancement along and across the chains of nanoparticles not due to shape anisotropy. For nanoparticle arrays higher SERS intensity is found along the particle chain, but for nanowire arrays higher SERS intensity is found for excitation across the wires. Higher intensity across nanowire arrays supports the argument that the SERS phenomenon is due to electromagnetic field enhancement (hot-junctions) caused by localized surface plasmon resonance across the nanowires having a 35 nm gap. The effect of inter-particle gap, ordering, and aspect ratio on field enhancement is demonstrated. Higher SERS intensity is observed in aligned elongated nanoparticles compared to aligned spherical, non-ordered nanoparticles, or aligned nanowires. Aligned silver nanowires enhance Raman scattering more strongly than aligned gold nanowires.

摘要

在预先图案化的波纹衬底上自对准的银纳米粒子和纳米线被用作活性表面增强拉曼散射 (SERS) 基底。报告的粒子间间隙为 5nm,阵列周期为 35nm,远低于当前的光刻限制。在这种阵列中观察到的 SERS 和表面等离激元共振的各向异性归因于沿纳米粒子链和穿过纳米粒子链的不同等离子体场增强,而不是由于形状各向异性。对于纳米粒子阵列,沿着粒子链发现更高的 SERS 强度,但对于纳米线阵列,在激发穿过线时发现更高的 SERS 强度。在纳米线阵列中更高的强度支持这样的观点,即 SERS 现象是由于纳米线之间的局域表面等离激元共振引起的电磁场增强(热点结)引起的,纳米线之间的间隙为 35nm。还证明了粒子间间隙、有序和纵横比对场增强的影响。与排列的球形、无序纳米粒子或排列的纳米线相比,排列的拉长银纳米粒子观察到更高的 SERS 强度。

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