首页> 外文会议>International conference on modelling, monitoring and management of air pollution >DETECTION AND CHARACTERIZATION OF CHEMICAL AND BIOLOGICAL AEROSOLS USING LASER-TRAPPING SINGLE-PARTICLE RAMAN SPECTROSCOPY
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DETECTION AND CHARACTERIZATION OF CHEMICAL AND BIOLOGICAL AEROSOLS USING LASER-TRAPPING SINGLE-PARTICLE RAMAN SPECTROSCOPY

机译:使用激光捕获单粒子拉曼光谱检测和表征化学和生物气溶胶

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Detection and characterization of the presence of chemical and biological agent aerosols in various complex atmospheric environments is essential. Raman spectroscopy has the ability to identify chemical molecules, but there are a limited number of photons detectable from each single airborne aerosol particle as it flows through a detecting system. Here, we report a single-particle Raman spectrometer that can measure strong spontaneous, stimulated, and resonance Raman spectra from a single laser-trapped airborne aerosol particle. Samples such as the VX nerve agent chemical simulant diethyl phthalate and various pollens were tested. A particular optical trap using two focusing counter-propagating hollow beams was able to stably trap both absorbing and non-absorbing particles in air for long observation times. Using this system, time-resolved Raman spectra and elastic scattered intensities were recorded to monitor the chemical properties and size variation of the trapped particle. Specifically, the developed technology was able to measure the Raman spectra from different submicron positions within a single laser-trapped airborne particle. Such a system provides a new approach for the detection and characterization of single airborne chemical- and biological-agent aerosol particles, as well as.to detect and monitor the molecules and molecular reactions located in different positions within a micron-sized particle as it responds to various micro-local environments.
机译:各种复杂大气环境中化学和生物试剂气溶胶存在的检测和表征是必不可少的。拉曼光谱具有识别化学分子的能力,但是由于它流过检测系统,因此可以从每个单一的空气溶液中检测到有限数量的光子。在这里,我们报告了一种单粒子拉曼光谱仪,可以测量来自单个激光捕获的空气载气溶胶颗粒的强烈的自发性,刺激和共振拉曼光谱。测试样品,例如Vx神经剂化学模拟邻苯二甲酸酯和各种花粉。使用两个聚焦反传播中空梁的特定光学陷阱能够稳定地捕获空气中的吸收和非吸收颗粒,以便长时间观察时间。使用该系统,记录时间分辨的拉曼光谱和弹性散射强度,以监测被困颗粒的化学性质和尺寸变化。具体地,开发的技术能够从单个激光捕获的空气传播颗粒内的不同亚微米位置测量拉曼光谱。这种系统提供了一种新方法,用于检测和表征单个空气传播和生物 - 药剂气溶胶颗粒,以及检测和监测位于微米尺寸粒子内的不同位置的分子和分子反应,因为它响应到各种微局环境。

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