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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Plasma-Spray Ionization (PLASI): A Multimodal Atmospheric Pressure Ion Source for Liquid Stream Analysis
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Plasma-Spray Ionization (PLASI): A Multimodal Atmospheric Pressure Ion Source for Liquid Stream Analysis

机译:等离子体喷雾电离(PLASI):用于液体流分析的多峰大气压离子源

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摘要

A new ion generation method, named plasma-spray ionization (PLASI) for direct analysis of liquid streams, such as in continuous infusion experiments or liquid chromatography (LC), is reported. PLASI addresses many of the analytical limitations of electrospray ionization (ESI) and has potential for real time process stream analysis and reaction monitoring under atmospheric conditions in non-ESI friendly scenarios. In PLASI-mass spectrometry (MS), the liquid stream is pneumatically nebulized and partially charged at low voltages; the resultant aerosol is thus entrained with a gaseous plasma plume from a distal glow discharge prior to MS detection. PLASI-MS not only overcomes ESI-MS limitations but also generates simpler mass spectra with minimal adduct and cluster formation. PLASI utilizes the atomization capabilities of an ESI sprayer operated below the ESI threshold to generate gas-phase aerosols that are then ionized by the plasma stream. When operated at or above the ESI threshold, ionization by traditional ESI mechanisms is achieved. The multimodal nature of the technique enables readily switching between plasma and ESI operation. It is expected that PLASI will enable analyzing a wide range of analytes in complex matrices and less-restricted solvent systems, providing more flexibility than that achievable by ESI alone.
机译:报道了一种新的离子产生方法,称为等离子喷雾电离(PLASI),用于直接分析液流,例如在连续注入实验或液相色谱(LC)中。 PLASI解决了电喷雾电离(ESI)的许多分析限制,并且在非ESI友好场景下,在大气条件下具有实时过程流分析和反应监控的潜力。在PLASI质谱(MS)中,液流被气动雾化并在低压下部分充电。因此,在进行MS检测之前,最终的气溶胶会被来自远侧辉光放电的气态等离子体羽流带走。 PLASI-MS不仅克服了ESI-MS的局限性,而且还以最少的加合物和团簇形成生成了更简单的质谱图。 PLASI利用在ESI阈值以下运行的ESI喷雾器的雾化能力来生成气相气溶胶,然后被等离子体流电离。在等于或高于ESI阈值的条件下运行时,可以通过传统的ESI机制实现电离。该技术的多峰性质使得可以在等离子和ESI操作之间轻松切换。期望PLASI将能够分析复杂基质和限制较少的溶剂系统中的多种分析物,比仅使用ESI所能提供的灵活性更高。

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