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Dual-pulse Laser Induced Breakdown Spectroscopy for analysis of gaseous and aerosol systems: Plasma-analyte interactions

机译:用于分析气态和气溶胶系统的双脉冲激光诱导击穿光谱:血浆-分析物相互作用

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Dual-pulse LIBS has been previously investigated to a large extent on solid and liquid phase analytes,where it has been demonstrated to significantly enhance atomic emission signal intensity,and more importantly,to enhance the analyte peak-to-base and signal-to-noise ratios.This study focuses on the effects of an orthogonal dual-pulse laser configuration on the atomic emission response for both purely gaseous and calcium-based aerosol samples.The gaseous sample consisted of purified (i.e.aerosol free) air,from which nitrogen and oxygen spectral emission lines were analyzed.Measurements for the gaseous system resulted in no notable improvements with the dual-pulse configuration as compared to the single-pulse LIBS.Experiments were also conducted in purified air seeded with calcium-rich particles,which revealed a marked improvement in calcium atomic emission peak-to-base (approx 2-fold increase) and signal-to-noise ratios (approx 4-fold increase) with the dual-pulse configuration.In addition to increased analyte response,dual-pulse LIBS yielded an enhanced single-particle sampling rate when compared to conventional LIBS.Transmission measurements with respect to the plasma-creating laser pulse were recorded for both single and dual-pulse methods over a range of temporal delays.In consideration of the spectroscopic and transmission data,the plasma-analyte interactions realized with a dual-pulse methodology are explained in terms of the interaction with the initially expanding plasma shock wave,which differs between gaseous and particulate phase analytes,as reported in a recent study [V.Hohreiter,D.W.Hahn,Calibration effects for laser-induced breakdown spectroscopy of gaseous sample streams: analyte response of gas-phase species versus solid-phase species,Anal.Chem.77 (2005) 1118-1124].
机译:先前已对固相和液相分析物进行了双脉冲LIBS的大量研究,已证明其可显着增强原子发射信号强度,更重要的是,可增强分析物的峰基和信噪比。本研究的重点是正交双脉冲激光配置对纯气态和钙基气溶胶样品原子发射响应的影响。气态样品由纯净的(即无气溶胶的)空气组成,其中氮气和分析了氧气光谱发射谱线。与单脉冲LIBS相比,双脉冲配置对气态系统的测量没有显着改善;还对在纯空气中接种了富含钙的颗粒进行了实验,结果表明通过双脉冲配置,钙原子发射峰峰-碱基(约增加2倍)和信噪比(约增加4倍)得到改善。为了提高分析物的响应性,与常规LIBS相比,双脉冲LIBS产生了更高的单颗粒采样率。在一定时间范围内,记录了单脉冲和双脉冲方法在等离子体产生激光脉冲方面的透射测量结果考虑到光谱和透射数据,用双脉冲方法实现的血浆-分析物相互作用是根据与最初扩展的等离子体激波的相互作用来解释的,这在气相和颗粒相分析物之间有所不同,最近的研究[V.Hohreiter,DWHahn,对气态样品流进行激光诱导的击穿光谱的校准效应:气相物质与固相物质的分析物响应,Anal.Chem.77(2005)1118-1124]。

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