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轴向垂直偏移方案,用于最小化玻璃峰背景获取装在玻璃瓶中的样品的拉曼光谱。

Axially perpendicular offset scheme for obtaining Raman spectra of housed samples in glass bottles with minimized glass-peak background.

机构信息

Department of Chemistry and Research Institute for Convergence of Basic Sciences, College of Natural Sciences, Hanyang University, Seoul, 04763, Korea.

出版信息

Analyst. 2018 Nov 5;143(22):5497-5504. doi: 10.1039/c8an01344f.

Abstract

An axially perpendicular offset (APO) scheme based on an axially perpendicular geometrical arrangement of laser illumination and photon detection, enabling spatially offset Raman spectroscopy (SORS), is proposed as a versatile tool for the minimization of the glass background in direct measurements of Raman spectra of samples housed in glass bottles. This strategy is based on the possibility of isolating glass photons from sample photons by properly locating a detector beneath the sample-housing bottle, because glass photons are much more localized near the glass wall while sample photons are widely distributed throughout the bottle. In addition, the curved bottom of the glass vial enabling forming the conical photon-detection volume would be further effective in exclusion of the glass photons in the acquisition of sample spectra. The APO scheme was validated by measuring the Raman spectra of 66% ethanol housed in four glass bottles of different sizes and colors; the measurements were performed by varying the offset distance from 2 mm to 20 mm. The intensity of the glass background decreased rapidly with increasing the offset distance; on the other hand, the variation in the ethanol intensity was relatively insignificant. In all cases, the offset distance of 16 mm minimized the presence of glass background in the spectra, thereby helping to highlight the pure ethanol bands and producing nearly similar sample spectral features regardless of contained bottles. The results of the Monte Carlo simulation were in accordance with the experimental observations, and the suppression of glass photons in the APO scheme was clearly explained and visualized by the simulation.

摘要

提出了一种基于激光照明和光子探测轴向垂直几何布置的轴向垂直偏移(APO)方案,可实现空间偏移拉曼光谱(SORS),作为一种将玻璃背景最小化的通用工具,可直接测量装在玻璃瓶中的样品的拉曼光谱。该策略基于通过在样品瓶下方适当定位探测器从样品光子中分离玻璃光子的可能性,因为玻璃光子在玻璃壁附近的位置更加集中,而样品光子则在整个瓶子中广泛分布。此外,玻璃小瓶的弯曲底部可形成锥形光子探测体积,这将进一步有效地排除在获取样品光谱时玻璃光子的干扰。通过测量四种不同尺寸和颜色的玻璃瓶中 66%乙醇的拉曼光谱,验证了 APO 方案;偏移距离从 2mm 变化到 20mm。随着偏移距离的增加,玻璃背景的强度迅速降低;另一方面,乙醇强度的变化相对较小。在所有情况下,16mm 的偏移距离最小化了光谱中的玻璃背景,从而有助于突出纯乙醇带,并产生几乎相似的样品光谱特征,而与包含的瓶子无关。蒙特卡罗模拟的结果与实验观察结果一致,并且模拟清楚地解释和可视化了 APO 方案中玻璃光子的抑制作用。

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