首页> 外文期刊>European journal of mass spectrometry >Laser-stimulated desorption of organic molecules from surfaces, as a method of increasing the efficiency of ion mobility spectrometry analysis
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Laser-stimulated desorption of organic molecules from surfaces, as a method of increasing the efficiency of ion mobility spectrometry analysis

机译:激光刺激来自表面的有机分子的解吸,作为提高离子迁移光谱分析效率的方法

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摘要

Application of laser-induced desorption was investigated as a method of increasing the efficiency of gas phase analyzers on principles of field asymmetric ion mobility spectrometry. Mass spectrometric data of investigations of laser desorption of pentaerythritoltetranitrate molecules and cyclotetramethylenetetranitramine molecules from quartz substrate under vacuum were obtained. Laser sources a Nd3+: YAG with nanosecond pulse duration (lambda = 532 nm) and a continuous wave diode laser (lambda = 440 nm) were used. It was shown that both laser sources have different desorption abilities. This is expressed in various time of appearance of desorbed products that is caused by different heating mechanisms of surface layer. The desorbed quantity under action of both laser sources exceeds the detection threshold for all modern gas phase analyzers. It should be noted that despite the presence of surface dissociation of explosives under laser radiation, the quantity of nondissociated molecules is large enough for detection by ion mobility and field asymmetric ion mobility spectrometers. The optimal parameters of laser radiation for effective removal (evaporation) molecules of low-volatile compounds from surfaces are defined. The conclusion about preferable use of a Nd3+: YAG laser for increasing the detection ability of detectors based on ion mobility spectrometry was made.
机译:研究了激光诱导的解吸的应用作为提高气相分析仪对现场不对称离子迁移光谱原理的气相分析仪的效率的方法。得到了在真空下从石英衬底的激光解吸的调查的质谱数据。使用纳秒脉冲持续时间(Lambda = 532nm)和连续波二极管激光(Lambda = 440nm)的激光来源Nd3 +:YAG。结果表明,两个激光源具有不同的解吸能力。这在由表面层的不同加热机制引起的解吸产品的各种外观中表达。在两个激光源的作用下解吸量超过所有现代气相分析仪的检测阈值。应当注意,尽管在激光辐射下存在爆炸物的表面解离,但是不良分子的量足够大,以通过离子迁移率和现场不对称离子迁移率检测。定义了来自表面的低挥发性化合物的有效除去(蒸发)分子的激光辐射的最佳参数。关于优选使用ND3 +:YAG激光器的结论,用于增加基于离子迁移光谱法的检测器的检测能力。

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