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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Impact of the plasmonic near- and far-field resonance-energy shift on the enhancement of infrared vibrational signals
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Impact of the plasmonic near- and far-field resonance-energy shift on the enhancement of infrared vibrational signals

机译:等离子体近场和远场共振能量位移对红外振动信号增强的影响

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摘要

We report on the impact of the differing spectral near-and far-field properties of resonantly excited gold nanoantennas on the vibrational signal enhancement in surface-enhanced infrared absorption (SEIRA). The knowledge on both spectral characteristics is of considerable importance for the optimization of plasmonic nanostructures for surface-enhanced spectroscopy techniques. From infrared micro-spectroscopic measurements, we simultaneously obtain spectral information on the plasmonic far-field response and, via SEIRA spectroscopy of a test molecule, on the near-field enhancement. The molecular test layer of 4,40-bis(N-carbazolyl)-1,1'-biphenyl (CBP) was deposited on the surface of gold nanoantennas with different lengths and thus different far-field resonance energies. We carefully studied the Fano-type vibrational lines in a broad spectral window, in particular, how the various vibrational signals are enhanced in relation to the ratio of the far-field plasmonic resonance and the molecular vibrational frequencies. As a detailed experimental proof of former simulation studies, we show the clearly red-shifted maximum SEIRA enhancement compared to the far-field resonance.
机译:我们报告了共振激发的金纳米天线的不同光谱近场和远场特性对表面增强红外吸收(SEIRA)中振动信号增强的影响。关于两种光谱特性的知识对于优化用于表面增强光谱技术的等离子体纳米结构具有相当重要的意义。从红外显微光谱测量中,我们同时获得了等离激元远场响应的光谱信息,并通过SEIRA光谱对测试分子进行了近场增强。 4,40-双(N-咔唑基)-1,1'-联苯(CBP)的分子测试层沉积在具有不同长度和不同远场共振能量的金纳米天线表面。我们仔细研究了宽光谱窗口中的Fano型振动线,尤其是如何根据远场等离子体共振的比率和分子振动频率来增强各种振动信号。作为以前模拟研究的详细实验证明,我们显示出与远场共振相比,红移最大的SEIRA最大增强。

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