大气压暗电流氩放电电离与实时质谱直接分析性能相当。

Q3 Physics and Astronomy
Mass spectrometry Pub Date : 2019-01-01 Epub Date: 2019-10-25 DOI:10.5702/massspectrometry.A0075
Kanako Sekimoto, Motoshi Sakakura, Hiroshi Hike, Takatomo Kawamukai, Teruhisa Shiota, Mitsuo Takayama
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引用次数: 0

摘要

本文描述了一种在环境空气中由氩气流与针状电极结合产生的暗电流放电状态,其电离效率和机制可与传统的氦直接实时分析(DART)相媲美,而不需要掺杂剂和DART辉光放电。利用该方法,α-氨基酸等极性化合物在暗电流氩气放电中通过(去)质子化、分子阴离子形成、碎片化、(去)质子化与氧的结合、(去)质子化与氢的损失和负离子的结合等途径被电离。相反,非极性化合物(如正构烷烃)通过氢化物提取和氧化被检测为正离子。观测到的主要背景离子为h30 +(H2O) n、O2·+、O2·-(H2O) n和CO3·-。这些结果表明,目前的暗电流放电有效地产生了内部能量为~ 14.2 eV的共振态氩,高于众所周知的亚稳态氩(~ 11.6 eV)。因此,在那里发生的电离反应可以归因于大气中的H2O和O2被共振态氩离子化,类似于氦DART。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Atmospheric Pressure Dark-Current Argon Discharge Ionization with Comparable Performance to Direct Analysis in Real Time Mass Spectrometry.

Atmospheric Pressure Dark-Current Argon Discharge Ionization with Comparable Performance to Direct Analysis in Real Time Mass Spectrometry.

Atmospheric Pressure Dark-Current Argon Discharge Ionization with Comparable Performance to Direct Analysis in Real Time Mass Spectrometry.

Atmospheric Pressure Dark-Current Argon Discharge Ionization with Comparable Performance to Direct Analysis in Real Time Mass Spectrometry.

Herein, a dark-current discharge state created by combining argon flow with a needle electrode in ambient air is described that has an ionization efficiency and mechanism comparable to those of conventional helium direct analysis in real time (DART), without requiring dopants and DART glow discharge. Using this method, polar compounds such as α-amino acids were ionized in the dark-current argon discharge via (de)protonation, molecular anion formation, fragmentation, (de)protonation with the attachment of oxygen, deprotonation with hydrogen loss and negative ion attachment. In contrast, nonpolar compounds (e.g., n-alkanes) were detected as positive ions via hydride abstraction and oxidation. Major background ions observed were H3O+(H2O) n , O2 ·+, O2 ·-(H2O) n and CO3 ·-. These results indicate that the present dark-current discharge efficiently generates resonance-state argon with an internal energy of ∼14.2 eV, higher than that of the well-known metastable state (∼11.6 eV). It is therefore suggested that ionization reactions occurring there can be attributed to the Penning ionization of atmospheric H2O and O2 by resonance-state argon, analogous to helium DART.

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来源期刊
Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
1.90
自引率
0.00%
发文量
3
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