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材料和网格特性对传输模式解吸电喷雾电离的影响。

The influence of material and mesh characteristics on transmission mode desorption electrospray ionization.

作者信息

Chipuk Joseph E, Brodbelt Jennifer S

机构信息

Department of Chemistry and Biochemistry, University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

J Am Soc Mass Spectrom. 2009 Apr;20(4):584-92. doi: 10.1016/j.jasms.2008.11.018. Epub 2008 Dec 3.

Abstract

Adaptation of desorption electrospray ionization to a transmission mode (TM-DESI) entails passing an electrospray plume through a sample that has been deposited onto a mesh substrate. A combination of mass spectrometry and fluorescence microscopy studies is used to illustrate the critical role material composition, mesh open space, and mesh fiber diameter play on the transmission, desorption, and ionization process. Substrates with open spaces less than 150 microm and accompanying minimal strand diameters produce less scattering of the plume and therefore favor transmission. Larger strand diameters typically encompass larger open spaces, but the increase in the surface area of the strand increases plume scattering as well as solvent and analyte spreading on the mesh. Polypropylene (PP), ethylene tetrafluoroethylene (ETFE), and polyetheretherketone (PEEK) materials afford much better desorption than similarly sized polyethylene terephthalate (PETE) or nylon-6,6 (PA66) substrates. Ultimately, the manner in which the electrospray plume interacts with the mesh as it is transmitted through the substrate is shown to be critical to performing and optimizing TM-DESI analyses. In addition, evidence is presented for analyte dependent variations in the desorption mechanisms of dry and solvated samples.

摘要

将解吸电喷雾电离技术应用于传输模式(TM-DESI)需要使电喷雾羽流穿过沉积在网状基质上的样品。结合质谱和荧光显微镜研究来说明材料组成、网孔开放空间和网丝直径在传输、解吸和电离过程中所起的关键作用。开放空间小于150微米且丝径最小的基质产生的羽流散射较少,因此有利于传输。较大的丝径通常包含较大的开放空间,但丝的表面积增加会增加羽流散射以及溶剂和分析物在网上的扩散。聚丙烯(PP)、乙烯四氟乙烯(ETFE)和聚醚醚酮(PEEK)材料比同样尺寸的聚对苯二甲酸乙二酯(PETE)或尼龙6,6(PA66)基质具有更好的解吸性能。最终,电喷雾羽流在穿过基质时与网的相互作用方式对于进行和优化TM-DESI分析至关重要。此外,还提供了证据表明干燥和溶剂化样品的解吸机制存在分析物依赖性变化。

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