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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Lateral resolution of desorption nanoelectrospray: a nanospray tip without nebulizing gas as a source of primary charged droplets
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Lateral resolution of desorption nanoelectrospray: a nanospray tip without nebulizing gas as a source of primary charged droplets

机译:解吸纳米电喷雾的横向分辨率:纳米喷雾头,不雾化气体作为主要带电液滴的来源

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摘要

Desorption nanoelectrospray (nanoDESI) was described in 2007 and it represents a miniaturized version of desorption electrospray without the assistance of the nebulizing gas. Compared to DESI, a nanoelectrospray tip (2 +/- 1 mu m I.D.) generates primary charged droplets of smaller sizes and lower spray liquid flow rates. This is the first report on utilization of nanoDESI for mass spectrometry imaging (MSI). Its new coupling with a Q-TOF instrument allowed faster mass spectra acquisition (4 Hz) essential for MSI of fine surface details. To evaluate nanoDESI potential for mass spectrometry imaging, etched glass substrates with Rhodamine B patterns of different dimensions were prepared. The Rhodamine B lines were analysed in 1D scanning mode and their width was determined experimentally by nanoDESI measurement. The experimental data revealed that the lateral resolution of nanoDESI is close to 30 mu m along the x-axis (orthogonal to the inlet). 2D scanning mode confirmed good resolution along both axes as dye squares with dimensions about 60 mu m x 60 mu m were easily distinguished. The low flow rate of the spray liquid reduced undesirable analyte washing effects, which allowed repeated scanning analysis of the surface. The presented results demonstrate the applicability of nanoDESI for high surface resolution mass spectrometry imaging.
机译:解吸纳米电喷雾(nanoDESI)于2007年进行了描述,它代表了不带雾化气体的情况下解吸电喷雾的小型化形式。与DESI相比,纳米电喷雾头(2 +/- 1μmI.D.)产生的初级带电液滴的尺寸较小,喷雾液的流速较低。这是有关将nanoDESI用于质谱成像(MSI)的第一份报告。它与Q-TOF仪器的新结合可以更快地采集质谱(4 Hz),这对于微细表面细节的MSI是必不可少的。为了评估用于质谱成像的nanoDESI潜力,制备了具有不同尺寸的若丹明B图案的蚀刻玻璃基板。罗丹明B线以一维扫描模式进行分析,并通过nanoDESI测量实验确定其宽度。实验数据表明,nanoDESI的横向分辨率沿x轴(与入口正交)接近30微米。 2D扫描模式证实了沿两个轴的良好分辨率,因为易于区分尺寸约为60μmx 60μm的染料方块。喷雾液的低流速降低了不良的分析物洗涤效果,从而允许对表面进行重复扫描分析。提出的结果证明了nanoDESI在高表面分辨率质谱成像中的适用性。

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