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基于纳米间隙的表面增强红外光谱学

Surface-enhanced infrared spectroscopy using nanometer-sized gaps.

机构信息

Kirchhoff Institute for Physics, University of Heidelberg , Im Neuenheimer Feld 227, 69120 Heidelberg, Germany.

出版信息

ACS Nano. 2014 May 27;8(5):4908-14. doi: 10.1021/nn500903v. Epub 2014 Apr 16.

Abstract

We report on the near-field coupling of individual gold nanoantennas arranged in tip-to-tip dimer configuration, leading to strong electromagnetic field enhancements in the infrared, which is of great interest for sensing applications such as surface-enhanced infrared spectroscopy. We quantitatively evaluated the enhancement of vibrational excitations of a 5 nm thick test layer of 4,4'-bis(N-carbazolyl)-1,1'-biphenyl as a function of different gap sizes. The dimers with the smallest gaps under investigation (∼3 nm) lead to more than 1 order of magnitude higher signal enhancement with respect to gaps of 50 nm width. The comparison of experimental data and finite-difference time-domain simulations reveals a nonperfect filling of the gaps with sizes below 10 nm, which means that morphological information on the nanoscale is obtained additionally to chemical information.

摘要

我们报告了在尖端到尖端二聚体配置中排列的单个金纳米天线的近场耦合,导致在红外波段产生强烈的电磁场增强,这对于表面增强红外光谱等传感应用非常感兴趣。我们定量评估了作为不同间隙尺寸函数的 5nm 厚测试层的 4,4'-双(N-咔唑基)-1,1'-联苯的振动激发的增强。在所研究的最小间隙(约 3nm)的二聚体相对于 50nm 宽度的间隙导致信号增强超过 1 个数量级。实验数据和时域有限差分模拟的比较表明,在尺寸低于 10nm 时,间隙没有完美填充,这意味着除了化学信息之外,还获得了纳米尺度上的形态信息。

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