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Gas Sensing with High-Resolution Localized Surface Plasmon Resonance Spectroscopy

机译:高分辨率局部表面等离子体共振光谱的气体传感

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摘要

We report the first inert gas sensing and characterization studies based on high-resolution localized surface plasmon resonance (HR-LSPR) spectroscopy. HR-LSPR was used to detect the extremely small changes (<3 × 10−4) in bulk refractive index when the gas was switched between He(g) and Ar(g) or He(g) and N2(g). We also demonstrate submonolayer sensitivity to adsorbed water from exposure of the sensor to air (40% humidity) versus dry N2(g). These measurements significantly expand the applications space and characterization tools for plasmonic nanosensors.
机译:我们报告了基于高分辨率的局部表面等离振子共振(HR-LSPR)光谱的第一项惰性气体传感和表征研究。当气体在He(g)和Ar(g)或He(g)之间切换时,HR-LSPR用于检测体积折光率的极小变化(<3×10 −4 )和N 2 (g)。我们还证明了相对于干燥的N 2 (g),传感器暴露在空气中(湿度为40%)对吸附水的亚单层敏感性。这些测量极大地扩展了等离子体纳米传感器的应用空间和表征工具。

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