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Pushing back the limits of Raman imaging by coupling super-resolution and chemometrics for aerosols characterization

机译:通过结合超分辨率和化学计量学进行气溶胶表征,拉曼成像的极限

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摘要

The increasing interest in nanoscience in many research fields like physics, chemistry, and biology, including the environmental fate of the produced nano-objects, requires instrumental improvements to address the sub-micrometric analysis challenges. The originality of our approach is to use both the super-resolution concept and multivariate curve resolution (MCR-ALS) algorithm in confocal Raman imaging to surmount its instrumental limits and to characterize chemical components of atmospheric aerosols at the level of the individual particles. We demonstrate the possibility to go beyond the diffraction limit with this algorithmic approach. Indeed, the spatial resolution is improved by 65% to achieve 200 nm for the considered far-field spectrophotometer. A multivariate curve resolution method is then coupled with super-resolution in order to explore the heterogeneous structure of submicron particles for describing physical and chemical processes that may occur in the atmosphere. The proposed methodology provides new tools for sub-micron characterization of heterogeneous samples using far-field (i.e. conventional) Raman imaging spectrometer.
机译:在诸如物理学,化学和生物学等许多研究领域,包括所生产的纳米物体的环境命运,人们对纳米科学的兴趣日益浓厚,需要对仪器进行改进以应对亚微米分析挑战。我们方法的独创性是在共焦拉曼成像中使用超分辨率概念和多变量曲线分辨率(MCR-ALS)算法,以超越其仪器极限,并在单个颗粒的水平上表征大气气溶胶的化学成分。我们证明了用这种算法方法超越衍射极限的可能性。实际上,对于所考虑的远场分光光度计来说,空间分辨率提高了65%,达到了200nm。然后,将多变量曲线分辨率方法与超分辨率相结合,以探索亚微米颗粒的异质结构,以描述大气中可能发生的物理和化学过程。所提出的方法为使用远场(即常规)拉曼成像光谱仪表征异质样品提供了新的工具。

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