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红外基质辅助激光解吸中物质喷射的波长和时间分辨成像。

Wavelength and time-resolved imaging of material ejection in infrared matrix-assisted laser desorption.

机构信息

Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, USA.

出版信息

J Phys Chem A. 2010 Jan 28;114(3):1492-7. doi: 10.1021/jp9077163.

Abstract

The dynamics of glycerol ablation at atmospheric pressure was studied using fast photography. A mid-infrared optical parametric oscillator was used to irradiate a droplet of glycerol at normal incidence. The wavelength of the infrared source was tunable and was varied between 2.7 and 3.5 microm for the studies. After an adjustable delay, an excimer pumped dye laser was used to illuminate the expanding plume, and the 90 degrees scattered light was imaged with a high-speed CMOS camera. The time delay between the IR and UV lasers was varied up to 1 ms with a particular emphasis in the early stages of plume evolution below 1 micros. The threshold fluence for plume formation varied between 1000 and 6000 J/m(2), and the minimum fluence corresponded to the OH stretch absorption of glycerol near 3.0 microm, which also corresponded to the greatest scattered light signal and duration of material emission. The velocity of the expanding plume was measured and ranged from >300 m/s near the OH stretch absorption to <100 m/s near the 3.4 microm CH stretch. Plume modeling calculations suggest that material removal is driven by phase explosion in the stress confinement regime that is at a maximum near the wavelength of the OH stretch absorption.

摘要

使用快速摄影技术研究了常压下甘油烧蚀的动力学。中红外光参量振荡器以正常入射角度辐照甘油液滴。红外光源的波长是可调的,在 2.7 到 3.5 微米之间变化,用于研究。在可调延迟之后,准分子泵浦染料激光器用于照亮膨胀羽流,90 度散射光用高速 CMOS 相机成像。IR 和 UV 激光器之间的时间延迟变化高达 1 毫秒,特别强调在羽流演化的早期阶段,低于 1 微秒。羽流形成的阈值通量在 1000 到 6000 J/m(2)之间变化,最小通量对应于甘油在 3.0 微米附近的 OH 伸缩吸收,这也对应于最大散射光信号和材料发射持续时间。膨胀羽流的速度被测量,范围从 OH 伸缩吸收附近的 >300 m/s 到 3.4 微米 CH 伸缩附近的 <100 m/s。羽流模型计算表明,在最大的应力约束区域,物质的去除是由相爆炸驱动的,该区域在 OH 伸缩吸收的波长附近达到最大值。

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