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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Photoacoustic Analysis of Matrix-Assisted Laser Desorption/Ionization Processes with Pulsed Infrared Lasers
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Photoacoustic Analysis of Matrix-Assisted Laser Desorption/Ionization Processes with Pulsed Infrared Lasers

机译:脉冲红外激光对基质辅助激光解吸/电离过程的光声分析

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摘要

A fast piezoelectric detection system was utilized to record time-resolved photoacoustic signals reflecting the thermal expansion and the rate of material ablation in infrared matrix-assisted laser desorption/ionization (IR-MALDI). Glycerol was employed as a liquid and 2,5-dihydroxybenzoic acid (2,5-DHB) as a crystalline matrix. An Er:YAG laser (λ = 1.4-4.0 μm; τ_L ~ 100 ns) and a wavelength-tunable optical parametric oscillator (OPO) laser system (λ = 1.4-4.0 μm; τ_L = 6 ns) were used for desorption/ionization. Material ejection and MALDI ion signals were recorded as a function of laser fluence, pulse duration, and wavelength. For glycerol as matrix, material ejection was found to be temporally confined to about the laser pulse duration when the OPO was employed. For excitation with the Er:YAG laser, a prolonged material ejection with an approximately exponential decay was observed with a characteristic time constant of ~1 μs. For both lasers, material ejection was observed already at fluences substantially below the MALDI ion threshold. For excitation with the OPO, was observed already at fluences substantially below the MALDI ion threshold. For excitation with the OPO, a correlation between change in the desorption/ablation mechanism and the onset of ion generation was found. Crystalline 2,5-DHB preparations were investigated with the OPO only. Material ejection from this matrix was found to exhibit a significantly different dependence of the overall ejected material on laser fluence. The article also provides an introduction to the underlying photoacoustic theory adapted to the MALDI process.
机译:快速压电检测系统用于记录时间分辨的光声信号,该信号反映了红外矩阵辅助激光解吸/电离(IR-MALDI)中的热膨胀和材料烧蚀速率。甘油用作液体,而2,5-二羟基苯甲酸(2,5-DHB)用作结晶基质。解吸/电离使用Er:YAG激光(λ= 1.4-4.0μm;τ_L〜100 ns)和波长可调光参量振荡器(OPO)激光系统(λ= 1.4-4.0μm;τ_L= 6 ns) 。记录材料喷射和MALDI离子信号与激光能量密度,脉冲持续时间和波长的关系。对于甘油作为基质,当使用OPO时,发现材料喷射在时间上被限制在大约激光脉冲持续时间。对于用Er:YAG激光激发,观察到材料以大约1μs的特征时间常数以近似指数衰减的长时间喷射。对于这两种激光器,已经在注量显着低于MALDI离子阈值的情况下观察到材料喷射。对于用OPO激发,已经观察到通量大大低于MALDI离子阈值。对于用OPO激发,发现了解吸/烧蚀机理的变化与离子产生的开始之间的相关性。仅使用OPO研究了结晶2,5-DHB制剂。发现从该基质中喷射出的材料显示出整体喷射出的材料对激光通量的显着不同的依赖性。本文还介绍了适用于MALDI过程的基础光声理论。

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