Graduate School of Nanobioscience, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama, Kanagawa 236-0027, Japan.
AMR Inc., 13-18 Nakane-2, Meguro-ku, Tokyo, 152-0031, Japan.
Analyst. 2016 Aug 2;141(16):4879-92. doi: 10.1039/c6an00779a.
Herein it is shown that a combination of direct analysis in real time (DART) with a corona discharge system consisting of only a needle electrode easily improves DART ionization efficiency. Positive and negative DC corona discharges led to a formation of abundant excited helium atoms as well as the reactant ions H3O(+)(H2O)n and O2˙(-) in the DART analyte ionization area. These phenomena resulted in an increase in the absolute intensities of (de)protonated analytes by a factor of 2-20 over conventional DART. The other analyte ions detected in this corona-DART system (i.e., molecular ions, fragment ions, oxygenated (de)protonated analytes, dehydrogenated deprotonated analytes, and negative ion adducts) were quite similar to those obtained from DART alone. This indicates a lack of side reactions due to the corona discharge. The change in the relative intensities of individual analyte-related ions due to the combination of a corona discharge system with DART suggests that there is no effect of the abundant excited helium in the analyte ionization area on the fragmentation processes or enhancement of oxidation due to hydroxyl radicals HO˙. Furthermore, it was found that the corona-DART combination can be applied to the highly sensitive analysis of n-alkanes, in which the alkanes are ionized as positive ions via hydride abstraction and oxidation, independent of the type of alkane or the mass spectrometer used.
本文表明,将实时直接分析(DART)与仅由针电极组成的电晕放电系统相结合,可轻松提高 DART 离子化效率。正、负直流电晕放电导致大量激发氦原子以及反应物离子 H3O(+)(H2O)n 和 O2˙(-)在 DART 分析物离子化区域形成。这些现象导致(去)质子化分析物的绝对强度相对于传统 DART 提高了 2-20 倍。在该电晕-DART 系统中检测到的其他分析物离子(即分子离子、碎片离子、含氧(去)质子化分析物、脱氢去质子化分析物和负离子加合物)与单独使用 DART 获得的离子非常相似。这表明由于电晕放电而缺乏副反应。由于电晕放电系统与 DART 的结合,个别与分析物相关的离子的相对强度的变化表明,在分析物离子化区域中丰富的激发氦对碎片过程或由于羟基自由基 HO˙而增强的氧化没有影响。此外,还发现电晕-DART 组合可用于高度敏感的分析烷烃,其中烷烃通过氢化物的提取和氧化作为正离子被离子化,而与烷烃的类型或使用的质谱仪无关。