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具有可变光谱分辨率的拉曼光谱和光致发光光谱

Raman and Photoluminescence Spectroscopy with a Variable Spectral Resolution.

作者信息

Pavić Ivan, Šoda Joško, Gašparić Vlatko, Ivanda Mile

机构信息

Department for Marine Electrical Engineering and Information Technologies, Faculty of Maritime Studies, Ruđera Boškovića 37, 21000 Split, Croatia.

Laboratory for Molecular Physics and Synthesis of New Materials, Ruđer Bošković Institute, Bijenička Cestra 54, 10000 Zagreb, Croatia.

出版信息

Sensors (Basel). 2021 Nov 28;21(23):7951. doi: 10.3390/s21237951.

Abstract

Raman and photoluminescence (PL) spectroscopy are important analytic tools in materials science that yield information on molecules' and crystals' vibrational and electronic properties. Here, we show results of a novel approach for Raman and PL spectroscopy to exploit variable spectral resolution by using zoom optics in a monochromator in the front of the detector. Our results show that the spectral intervals of interest can be recorded with different zoom factors, significantly reducing the acquisition time and changing the spectral resolution for different zoom factors. The smallest spectral intervals recorded at the maximum zoom factor yield higher spectral resolution suitable for Raman spectra. In contrast, larger spectral intervals recorded at the minimum zoom factor yield the lowest spectral resolution suitable for luminescence spectra. We have demonstrated the change in spectral resolution by zoom objective with a zoom factor of 6, but the perspective of such an approach is up to a zoom factor of 20. We have compared such an approach on the prototype Raman spectrometer with the high quality commercial one. The comparison was made on ZrO and TiO nanocrystals for Raman scattering and AlO for PL emission recording. Beside demonstrating that Raman spectrometer can be used for PL and Raman spectroscopy without changing of grating, our results show that such a spectrometer could be an efficient and fast tool in searching for Raman and PL bands of unknown materials and, thereafter, spectral recording of the spectral interval of interest at an appropriate spectral resolution.

摘要

拉曼光谱和光致发光(PL)光谱是材料科学中的重要分析工具,可提供有关分子和晶体振动及电子性质的信息。在此,我们展示了一种用于拉曼光谱和PL光谱的新颖方法的结果,该方法通过在探测器前方的单色仪中使用变焦光学器件来利用可变光谱分辨率。我们的结果表明,可以使用不同的变焦因子记录感兴趣的光谱区间,从而显著减少采集时间,并针对不同的变焦因子改变光谱分辨率。在最大变焦因子下记录的最小光谱区间可产生适用于拉曼光谱的更高光谱分辨率。相比之下,在最小变焦因子下记录的较大光谱区间可产生适用于发光光谱的最低光谱分辨率。我们已经展示了变焦物镜在变焦因子为6时光谱分辨率的变化,但这种方法的前景可达变焦因子20。我们已将这种方法在原型拉曼光谱仪上与高质量的商用光谱仪进行了比较。比较是在用于拉曼散射的ZrO和TiO纳米晶体以及用于PL发射记录的AlO上进行的。除了证明拉曼光谱仪无需更换光栅即可用于PL光谱和拉曼光谱外,我们的结果还表明,这种光谱仪在寻找未知材料的拉曼和PL波段以及随后以适当的光谱分辨率记录感兴趣的光谱区间时可能是一种高效且快速的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ea9/8659809/dde81e6cc0bb/sensors-21-07951-g001.jpg

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