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Enhancing Double-Beam Laser Tweezers Raman Spectroscopy (LTRS) for the Photochemical Study of Individual Airborne Microdroplets

机译:增强双束激光镊子拉曼光谱(LTRS)用于单个机载微滴的光化学研究

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摘要

A new device and methodology for vertically coupling confocal Raman microscopy with optical tweezers for the in situ physico- and photochemical studies of individual microdroplets (Ø ≤ 10 µm) levitated in air is presented. The coupling expands the spectrum of studies performed with individual particles using laser tweezers Raman spectroscopy (LTRS) to photochemical processes and spatially resolved Raman microspectroscopy on airborne aerosols. This is the first study to demonstrate photochemical studies and Raman mapping on optically levitated droplets. By using this configuration, photochemical reactions in aerosols of atmospheric interest can be studied on a laboratory scale under realistic conditions of gas-phase composition and relative humidity. Likewise, the distribution of photoproducts within the drop can also be observed with this setup. The applicability of the coupling system was tested by studying the photochemical behavior of microdroplets (5 µm < Ø < 8 µm) containing an aqueous solution of sodium nitrate levitated in air and exposed to narrowed UV radiation (254 ± 25 nm). Photolysis of the levitated NaNO3 microdroplets presented photochemical kinetic differences in comparison with larger NaNO3 droplets (40 µm < Ø < 80 µm), previously photolyzed using acoustic traps, and heterogeneity in the distribution of the photoproducts within the drop.
机译:提出了一种新的设备和方法,用于将共焦拉曼显微镜与光镊垂直耦合,用于对悬浮在空气中的单个微滴(Ø≤10 µm)进行原位物理和光化学研究。这种耦合将使用激光镊子拉曼光谱仪(LTRS)的单个颗粒进行的研究范围扩展到光化学过程,以及对机载气溶胶的空间分辨拉曼光谱仪。这是第一项证明对光悬浮液滴进行光化学研究和拉曼映射的研究。通过使用这种配置,可以在实验室规模下在气相组成和相对湿度的实际条件下研究大气感兴趣的气溶胶中的光化学反应。同样,通过这种设置也可以观察到液滴内光产物的分布。通过研究微滴(5 µm <Ø<8 µm)的微滴的光化学行为来测试耦合系统的适用性,该微滴包含悬浮在空气中并暴露于狭窄的UV辐射(254±25 nm)的硝酸钠水溶液。与以前使用声阱进行光解的较大的NaNO3液滴(40 µm <Ø<80 µm)相比,悬浮的NaNO3微液滴的光解表现出光化学动力学差异,并且液滴中的光产物分布不均一。

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