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首页> 外文期刊>Planetary and space science >Detecting aromatic compounds on planetary surfaces using ultraviolet time-resolved fluorescence spectroscopy
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Detecting aromatic compounds on planetary surfaces using ultraviolet time-resolved fluorescence spectroscopy

机译:使用紫外时间分辨荧光光谱法检测行星表面上的芳族化合物

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Many aromatic organic molecules exhibit strong and characteristic fluorescence when excited with ultraviolet radiation. As laser excitation in the ultraviolet generates both fluorescence and resonantly enhanced Raman scattering of aromatic vibrational modes, combined Raman and fluorescence instruments have been proposed to search for organic compounds on Mars. In this work the time-resolved fluorescence of a suite of 24 compounds composed of 2-5 ringed alternant, non-alternant, and heterocyclic PAHs was measured. Fluorescence instrumentation with similar specifications to a putative flight instrument was capable of observing the fluorescence decay of these compounds with a sub-ns resolution. Incorporating time-resolved capabilities was also found to increase the ability to discriminate between individual PAHs. Incorporating time-resolved fluorescence capabilities into an ultraviolet gated Raman system intended for a rover or lander can increase the ability to detect and characterize PAHs on planetary surfaces.
机译:当被紫外线辐射激发时,许多芳族有机分子会显示出强而有特色的荧光。由于紫外光中的激光激发既产生荧光又产生共振增强的芳香族振动模态拉曼散射,因此提出了结合拉曼和荧光仪器在火星上寻找有机化合物的建议。在这项工作中,测量了一组由2-5个环状交替,非交替和杂环PAH组成的24种化合物的时间分辨荧光。与推定的飞行仪器具有相似规格的荧光仪器能够以亚ns分辨率观察这些化合物的荧光衰减。还发现合并时间分辨功能可以提高区分各个PAH的能力。将时间分辨的荧光功能结合到用于漫游者或着陆器的紫外线门控拉曼系统中,可以提高检测和表征行星表面PAH的能力。

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