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Laser Ablation Surface-Enhanced Raman Microspectroscopy

机译:激光烧蚀表面增强拉曼光谱

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摘要

Improved identification of trace organic compounds in complex matrixes is critical for a variety of fields such as material science, heritage science, and forensics. Surface-enhanced Raman scattering (SERS) is a vibrational spectroscopy technique that can attain single-molecule sensitivity and has been shown to complement mass spectrometry, but lacks widespread application without a robust method that utilizes the effect. We demonstrate a new, highly sensitive, and widely applicable approach to SERS analysis based on laser ablation in the presence of a tailored plasmonic substrate. We analyze several challenging compounds, including non-water-soluble pigments and dyed leather from an ancient Egyptian chariot, achieving sensitivity as high as 120 amol for a 1:1 signal-to-noise ratio and 5 μm spatial resolution. This represents orders of magnitude improvement in spatial resolution and sensitivity compared to those of other SERS approaches intended for widespread application, greatly increasing the applicability of SERS.
机译:改善复杂基质中痕量有机化合物的鉴定对于诸如材料科学,遗产科学和法医学等多个领域至关重要。表面增强拉曼散射(SERS)是一种振动光谱技术,可以实现单分子灵敏度,并且已被证明可以补充质谱,但是缺乏一种广泛使用的方法,而没有利用该效应的可靠方法。我们展示了一种新的,高度灵敏的,可广泛应用的方法,用于在存在定制等离子激元的情况下,基于激光烧蚀的SERS分析。我们分析了几种具有挑战性的化合物,包括来自古代埃及战车的非水溶性颜料和染色皮革,对于1:1的信噪比和5μm的空间分辨率,灵敏度高达120 amol。与旨在广泛应用的其他SERS方法相比,这代表了空间分辨率和灵敏度的数量级提高,从而大大提高了SERS的适用性。

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