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首页> 外文期刊>Atmospheric Measurement Techniques >Constraining the sensitivity of iodide adduct chemical ionization mass spectrometry to multifunctional organic molecules using the collision limit and thermodynamic stability of iodide ion adducts
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Constraining the sensitivity of iodide adduct chemical ionization mass spectrometry to multifunctional organic molecules using the collision limit and thermodynamic stability of iodide ion adducts

机译:利用碘离子加合物的碰撞极限和热力学稳定性,限制碘加合物化学电离质谱对多功能有机分子的敏感性

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The sensitivity of a chemical ionization mass spectrometer (ions formed per number density of analytes) is fundamentally limited by the collision frequency between reagent ions and analytes, known as the collision limit, the ion–molecule reaction time, and the transmission efficiency of product ions to the detector. We use the response of a time-of-flight chemical ionization mass spectrometer (ToF-CIMS) to Nsub2/subOsub5/sub, known to react with iodide at the collision limit, to constrain the combined effects of ion–molecule reaction time, which is strongly influenced by mixing and ion losses in the ion–molecule reaction drift tube. A mass spectrometric voltage scanning procedure elucidates the relative binding energies of the ion adducts, which influence the transmission efficiency of molecular ions through the electric fields within the vacuum chamber. Together, this information provides a critical constraint on the sensitivity of a ToF-CIMS towards a wide suite of routinely detected multifunctional organic molecules for which no calibration standards exist. We describe the scanning procedure and collision limit determination, and we show results from the application of these constraints to the measurement of organic aerosol composition at two different field locations.
机译:化学电离质谱仪(按分析物的每密度密度形成的离子)的灵敏度从根本上受到试剂离子和分析物之间的碰撞频率(称为碰撞极限),离子-分子反应时间以及产物离子的传输效率的限制。到探测器。我们使用飞行时间化学电离质谱仪(ToF-CIMS)对N 2 O 5 的响应,该响应在碰撞极限时会与碘化物反应,限制离子分子反应时间的综合影响,这在很大程度上受离子分子反应漂移管中混合和离子损失的影响。质谱电压扫描程序阐明了离子加合物的相对结合能,这影响了分子离子通过真空室内电场的传输效率。这些信息加在一起,对ToF-CIMS对一系列常规检测的多功能有机分子(没有校准标准)的敏感性提供了关键的限制。我们描述了扫描程序和碰撞极限确定,并展示了这些约束条件在两个不同领域中对有机气溶胶成分的测量结果。

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