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Ambient Mass Spectrometric Detection of Organometallic Compounds Using Direct Analysis in Real Time

机译:实时直接分析用于有机金属化合物的环境质谱检测

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The present work describes the mass spectrometric detection of organometallic compounds following their atmospheric pressure ionization using a commercial direct analysis in real time (DART) ion source. Several organometallic compounds of As, Fe, Hg, Pb, Se, and Sn were examined, and their corresponding mass spectra as well as induced fragmentation patterns were recorded. Gas phase sampling of the pure organometallic compounds or their solutions prepared in toluene generated temporally stable signals. For the majority of the compounds, the molecular ion or protonated molecule was detected; noticeable exceptions are the tetra-substituted compounds for which their less-substituted species dominated. The organometallic species were used as model compounds for a systematic investigation of the impact of operating parameters of the DART source, including gas temperature and electrode voltages. In general, results have shown that powering the electrodes designed to remove ions from the DART gas stream results in a reduction in signal intensity for most of the compounds investigated, suggesting that charged species from the plasma play an important role in the ionization process of the test analytes.
机译:本工作描述了使用大气压电离后使用商业直接实时分析(DART)离子源对有机金属化合物进行质谱检测。检查了As,Fe,Hg,Pb,Se和Sn的几种有机金属化合物,并记录了它们相应的质谱图和诱导的碎裂模式。对纯有机金属化合物或其在甲苯中制备的溶液进行气相采样可生成时间稳定的信号。对于大多数化合物,可以检测到分子离子或质子化分子。值得注意的例外是四取代的化合物,其取代度较低的物质占主导地位。有机金属物质被用作模型化合物,用于系统研究DART源的操作参数(包括气体温度和电极电压)的影响。通常,结果表明,为设计用于从DART气流中去除离子的电极供电会导致大多数所研究化合物的信号强度降低,这表明来自等离子体的带电物质在离子的电离过程中起着重要作用。测试分析物。

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