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Self-Organized Nanorod Arrays for Large-Area Surface-Enhanced Infrared Absorption

机译:用于大面积表面增强的红外吸收的自组织纳米棒阵列

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摘要

Capabilities of highly sensitive surface-enhanced infrared absorption (SEIRA) spectroscopy are demonstrated by exploiting large-area templates (cm(2)) based on self-organized (SO) nanorod antennas. We engineered highly dense arrays of gold nanorod antennas featuring polarization-sensitive localized plasmon resonances, tunable over a broadband near- and mid-infrared (IR) spectrum, in overlap with the so-called "functional group" window. We demonstrate polarization- sensitive SEIRA activity, homogeneous over macroscopic areas and stable in time, by exploiting prototype self-assembled monolayers of IR-active octadecanthiol (ODT) molecules. The strong coupling between the plasmonic excitation and molecular stretching modes gives rise to characteristic Fano resonances in SEIRA. The SO engineering of the active hotspots in the arrays allows us to achieve signal amplitude improved up to 5.7%. This figure is competitive to the response of lithographic nanoantennas and is stable when the optical excitation spot varies from the micro- to macroscale, thus enabling highly sensitive SEIRA spectroscopy with cost-effective nanosensor devices.
机译:通过基于自组织(SO)纳米棒天线的大面积模板(CM(2))来证明高敏感表面增强的红外吸收(SEIRA)光谱的能力。我们设计了高度密集的金纳径天线阵列,具有偏振敏感的局部等离子体共振,可在宽带和中红外(IR)频谱上可调谐,与所谓的“功能组”窗口重叠。我们通过利用原型自组装单层(ODT)分子,展示宏观区域均匀均匀的Seira活性,并及时稳定地稳定。等离子体激发和分子拉伸模式之间的强耦合产生了Seira的特征范围共振。所以阵列中的有源热点的工程允许我们实现信号幅度提高至5.7%。该图对于光刻纳米环绕的响应具有竞争力,并且当光学激发点从微量到宏观变化时是稳定的,从而使高度敏感的SEIRA光谱与具有成本效益的纳米传感器装置。

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