首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Mass spectrometric characteristics and preliminary figures of merit for polyaromatic hydrocarbons via the liquid sampling-atmospheric pressure glow discharge microplasma
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Mass spectrometric characteristics and preliminary figures of merit for polyaromatic hydrocarbons via the liquid sampling-atmospheric pressure glow discharge microplasma

机译:通过液体采样 - 大气压辉光放电微血管基质烃的质谱特性及多芳芳烃优选初步图

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The liquid sampling-atmospheric pressure glow discharge (LS-APGD) has been demonstrated as a combined atomic and molecular (CAM) ionization source, through the analysis of elemental species, small polar molecules, and proteins. Operation using 2% HNO_3 as the electrolytic carrier solution is employed for elemental analysis, while simply changing to a MeOH∶H_2O solution results in mass spectra reflecting the protonation of polar molecular species. In an effort to expand the already diverse sampling capabilities of the LS-APGD, the determination of low-polarity polyaromatic hydrocarbons (PAHs) was investigated. These molecules contain none of the common polar sites for protonation, typically undergoing ionization via charge transfer or electron ionization, forming radical cations. While LS-APGD ionization is believed to involve both electron and Penning ionization, as well as solvent-derived gas phase proton transfer reactions, it was expected that a radical cation formation would be the sole product for PAHs. Interestingly, both radical cation and protonated molecular ions were observed for each of the PAHs studied, suggesting concurrent electron/Penning ionization and atmospheric pressure chemical ionization (APCI). In order to assess the potential analytical utility of the approach, preliminary detection limits of as low as 270 pg mL~(-1) (5.4 pg, absolute) have been realized. The addition of PAH species to the microplasma's analyte portfolio expands the concept of CAM ionization, finding utility in diverse fields, including environmental analysis and petroleomics.
机译:通过分析元素物种,小极性分子和蛋白质,已经证明了液体采样 - 大气压辉光放电(LS-APGD)作为组合原子和分子(CAM)电离源。使用2%HNO_3的操作作为电解载体溶液用于元素分析,同时简单地改变为MeOH:H_2O溶液,导致反映极性分子物种质量的质谱。努力扩展LS-APGD的已经多样化的采样能力,研究了低极性多芳芳烃(PAHS)的测定。这些分子含有非对质子化的常见极性位点,通常通过电荷转移或电子电离进行电离,形成自由基阳离子。虽然认为LS-APGD电离涉及电子和粘合电离,以及溶剂衍生的气相质子转移反应,但预期自由基阳离子形成将是PAHS的唯一产物。有趣的是,对于所研究的每种PAH来说,观察到自由基阳离子和质子化分子离子,表明并发电子/铅电离和大气压化学电离(APCI)。为了评估方法的潜在分析效用,已经实现了低至270pg ml〜(-1)(5.4pg,绝对)的初步检测限。对微血药物的分析物组合的PAH物种扩展了凸轮电离,在不同领域的效用,包括环境分析和石油杂志。

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