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Detection Limits of Organic Compounds Achievable with Intense, Short-Pulse Lasers

机译:强短脉冲激光可实现的有机化合物的检出限

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摘要

Many organic molecules have strong absorption bands which can be accessed by ultraviolet short pulse lasers to produce efficient ionization. This resonant multiphoton ionization scheme has already been exploited as an ionization source in time-of-flight mass spectrometers used for environmental trace analysis. In the present work we quantify the ultimate potential of this technique by measuring absolute ion yields produced from the interaction of 267 nm femtosecond laser pulses with the organic molecules indole and toluene, and gases Xe, N2 and O2. Using multiphoton ionization cross sections extracted from these results, we show that the laser pulse parameters required for real-time detection of aromatic molecules at concentrations of one part per trillion in air and a limit of detection of a few attomoles are achievable with presently available commercial laser systems. The potential applications for the analysis of human breath, blood and tissue samples are discussed.
机译:许多有机分子具有很强的吸收带,紫外线短脉冲激光可以进入该吸收带以产生有效的电离作用。这种共振多光子电离方案已被用作环境痕量分析的飞行时间质谱仪中的电离源。在本工作中,我们通过测量267 nm飞秒激光脉冲与有机分子吲哚和甲苯以及气体Xe,N2和O2的相互作用产生的绝对离子产率来量化该技术的最终潜力。使用从这些结果中提取的多光子电离截面,我们表明,利用目前可买到的商业产品,可以实现实时检测空气中万亿分之一浓度的芳香族分子所需的激光脉冲参数,并且可以检测出几个小原子。激光系统。讨论了分析人类呼吸,血液和组织样本的潜在应用。

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