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用于提高质谱灵敏度的带有纳米电喷雾源和接口的亚环境压力电离。

Subambient pressure ionization with nanoelectrospray source and interface for improved sensitivity in mass spectrometry.

作者信息

Page Jason S, Tang Keqi, Kelly Ryan T, Smith Richard D

机构信息

Biological Sciences Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington 99352, USA.

出版信息

Anal Chem. 2008 Mar 1;80(5):1800-5. doi: 10.1021/ac702354b. Epub 2008 Feb 1.

Abstract

A nanoelectrospray ionization mass spectrometry (ESI-MS) source and interface has been designed that enables efficient ion production and transmission in a 30 Torr pressure environment using solvents compatible with typical reversed-phase liquid chromatography (RPLC) separations. In this design, the electrospray emitter is located inside the mass spectrometer in the same region as an electrodynamic ion funnel. This avoids the use of a conductance limiting ion inlet, as required by a conventional atmospheric pressure ESI source, and allows more efficient ion transmission to the mass analyzer. The new subambient pressure ionization with nanoelectrospray (SPIN) source improves instrument sensitivity and enables new electrospray interface designs, including the use of multi-emitter approaches. Performance of the SPIN source was evaluated by electrospraying standard solutions at 300 nL/min and comparing results with those obtained from a standard atmospheric pressure ESI source that used a heated capillary inlet. This initial study demonstrated an approximately 5-fold improvement in sensitivity when the SPIN source was used compared to a standard atmospheric pressure ESI source. The importance of desolvation was also investigated by electrospraying at different flow rates, which showed that the ion funnel provided an effective desolvation region to aid the creation of gas-phase analyte ions.

摘要

已设计出一种纳米电喷雾电离质谱(ESI-MS)源和接口,该源和接口能够在30托压力环境中,使用与典型反相液相色谱(RPLC)分离兼容的溶剂,实现高效的离子产生和传输。在这种设计中,电喷雾发射器位于质谱仪内部与电动离子漏斗相同的区域。这避免了使用传统大气压ESI源所需的电导限制离子入口,并允许更高效地将离子传输到质量分析器。新型带纳米电喷雾的亚环境压力电离(SPIN)源提高了仪器灵敏度,并实现了新的电喷雾接口设计,包括使用多发射器方法。通过以300 nL/min的流速电喷雾标准溶液,并将结果与使用加热毛细管入口的标准大气压ESI源获得的结果进行比较,对SPIN源的性能进行了评估。这项初步研究表明,与标准大气压ESI源相比,使用SPIN源时灵敏度提高了约5倍。还通过在不同流速下进行电喷雾研究了去溶剂化的重要性,结果表明离子漏斗提供了一个有效的去溶剂化区域,有助于形成气相分析物离子。

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