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Vibrational emission analysis of the CN molecules in laser-induced breakdown spectroscopy of organic compounds

机译:有机化合物激光诱导击穿光谱中CN分子的振动发射分析

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Laser-induced breakdown spectroscopy (LIBS) of organic materials is based on the analysis of atomic and ionic emission lines and on a few molecular bands, the most important being the CN violet system and the C2 Swan system. This paper is focused in molecular emission of LIBS plasmas based on the CN (B~2Σ-X~2Σ) band, one of the strongest emissions appearing in all carbon materials when analyzed in air atmosphere. An analysis of this band with sufficient spectral resolution provides a great deal of information on the molecule, which has revealed that valuable information can be obtained from the plume chemistry and dynamics affecting the excitation mechanisms of the molecules. The vibrational emission of this molecular band has been investigated to establish the dependence of this emission on the molecular structure of the materials. The paper shows that excitation/ emission phenomena of molecular species observed in the plume depend strongly on the time interval selected and on the irradiance deposited on the sample surface. Precise time resolved LIBS measurements are needed for the observation of distinctive CN emission. For the organic compounds studied, larger differences in the behavior of the vibrational emission occur at early stages after plasma ignition. Since molecular emission is generally more complex than that involving atomic emission, local plasma conditions as well as plume chemistry may induce changes in vibrational emission of molecules. As a consequence, alterations in the distribution of the emissions occur in terms of relative intensities, being sensitive to the molecular structure of every single material.
机译:有机材料的激光诱导击穿光谱法(LIBS)基于原子和离子发射谱线以及一些分子带的分析,其中最重要的是CN紫罗兰色体系和C2 Swan体系。本文着重研究基于CN(B〜2Σ-X〜2Σ)谱带的LIBS等离子体的分子发射,这是在空气中分析时所有碳材料中最强的发射之一。对具有足够光谱分辨率的该谱带进行分析可提供有关分子的大量信息,这表明可以从羽流化学性质和影响分子激发机理的动力学中获得有价值的信息。已经对该分子带的振动发射进行了研究,以确定该发射对材料分子结构的依赖性。该论文表明,在羽流中观察到的分子种类的激发/发射现象在很大程度上取决于选择的时间间隔和沉积在样品表面上的辐照度。需要精确的时间分辨LIBS测量来观察独特的CN发射。对于所研究的有机化合物,在等离子点火后的早期阶段,振动发射行为的差异更大。由于分子发射通常比涉及原子发射的发射更为复杂,因此局部等离子体条件以及羽流化学作用可能会引起分子振动发射的变化。结果,发射分布的改变根据相对强度发生,对每种材料的分子结构敏感。

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