首页> 外文会议>Novel Optical Instrumentation for Biomedical Applications II; Progress in Biomedical Optics and Imaging; vol.6 no.33 >Vapor-phase infrared spectroscopy on solid organic compounds with a pulsed resonant photoacoustic detection scheme
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Vapor-phase infrared spectroscopy on solid organic compounds with a pulsed resonant photoacoustic detection scheme

机译:固体有机化合物的气相红外光谱和脉冲共振光声检测方案

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There is a great need for a low cost and sensitive method to measure infrared spectra of solid organic compounds in the gas phase. To record such spectra, we propose an optical parametric generator-based photoacoustic spectrometer, which emits in the mid-infrared fingerprint region between 3 and 4 μm. In this system, the sample is heated in a vessel before entering a home built photoacoustic cell, where the gaseous molecules are excited by a tunable laser source with a frequency repetition rate that matches the first longitudinal resonance frequency of the photocaoustic cell. In a first phase, we have focused on low-melting point stimulants such as Nikethamide, Mephentermine sulfate, Methylephedrine, Ephedrine and Pseudoephedrine. The vapor-phase spectra of these doping substances were measured between 2800 and 3100 cm~(-1), where fundamental C-H stretching vibrations take place. Our spectra show notable differences with commercially available condensed phase spectra. Our scheme enables to measure very low vapor pressures of low-melting point (< 160℃) solid organic compounds. Furthermore, the optical resolution of 8 cm~(-1) is good enough to distinguish closely related chemical structures such as the Ephedra alkaloids Ephedrine and Methylephedrine, but doesn't allow to differentiate diastereoisomeric pairs such as Ephedrine and Pseudoephedrine, two important neurotransmitters which reveal different biological activities. Therefore, higher resolution and a system capable of measuring organic compounds with higher melting points are required.
机译:迫切需要一种低成本,灵敏的方法来测量气相中固态有机化合物的红外光谱。为了记录此类光谱,我们提出了一种基于光学参量发生器的光声光谱仪,该光谱仪会在3至4μm的中红外指纹区域内发射光。在该系统中,样品在进入家用光声室之前先在容器中加热,在此气态分子被可调谐激光源激发,其频率重复率与光声室的第一纵向共振频率匹配。在第一阶段,我们专注于低熔点兴奋剂,例如耐克乙酰胺,硫酸甲芬特胺,甲基麻黄碱,麻黄碱和伪麻黄碱。在2800和3100 cm〜(-1)之间测量了这些掺杂物质的气相光谱,在此发生了基本的C-H拉伸振动。我们的光谱与市售的浓缩相光谱显示出显着差异。我们的方案可以测量低熔点(<160℃)固体有机化合物的极低蒸气压。此外,8 cm〜(-1)的光学分辨率足以区分密切相关的化学结构,如麻黄生物碱麻黄碱和甲基麻黄碱,但不允许区分非对映异构对,如麻黄碱和伪麻黄碱,这是两个重要的神经递质揭示不同的生物活性。因此,需要更高分辨率和能够测量具有更高熔点的有机化合物的系统。

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