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紫外拉曼成像——天体生物学的一种有前途的工具:对SNC火星陨石进行不同激发波长的拉曼对比研究。

UV Raman imaging--a promising tool for astrobiology: comparative Raman studies with different excitation wavelengths on SNC Martian meteorites.

作者信息

Frosch Torsten, Tarcea Nicolae, Schmitt Michael, Thiele Hans, Langenhorst Falko, Popp Jürgen

机构信息

Institut für Physikalische Chemie, Friedrich-Schiller-Universität Jena, Helmholtzweg 4, D-07743 Jena, Germany.

出版信息

Anal Chem. 2007 Feb 1;79(3):1101-8. doi: 10.1021/ac0618977.

Abstract

The great capabilities of UV Raman imaging have been demonstrated on the three Martian meteorites: Sayh al Uhaymir, Dar al Gani, and Zagami. Raman spectra without disturbing fluorescence and with high signal-to-noise-ratios and full of spectral features were derived. This result is of utmost importance for the development of powerful instruments for space missions. By point scanning the surfaces of the meteorite samples, it was possible for the first time to construct UV-Raman images out of the array of Raman spectra. Deep-UV Raman images are to the best of our knowledge presented for the first time. The images were used for a discussion of the chemical-mineralogical composition and texture of the meteorite surfaces. Comparative Raman studies applying visible and NIR Raman excitation wavelengths demonstrate a much better performance for UV Raman excitation. This comparative study of different Raman excitation wavelengths at the same sample spots was done by constructing a versatile, robust sample holder with a fixed micro-raster. The overall advantages of UV resonance Raman spectroscopy in terms of sensitivity and selectivity are demonstrated and discussed. Finally the application of this new technique for a UV Raman instrument for envisaged astrobiological focused space missions is suggested.

摘要

紫外拉曼成像的强大功能已在三块火星陨石上得到验证

赛义德·乌哈米尔陨石、达尔·加尼陨石和扎加米陨石。获得了不受荧光干扰、具有高信噪比且充满光谱特征的拉曼光谱。这一结果对于开发用于太空任务的强大仪器至关重要。通过对陨石样本表面进行逐点扫描,首次能够从拉曼光谱阵列构建紫外拉曼图像。据我们所知,首次展示了深紫外拉曼图像。这些图像用于讨论陨石表面的化学矿物组成和纹理。应用可见和近红外拉曼激发波长的对比拉曼研究表明,紫外拉曼激发具有更好的性能。通过构建一个带有固定微光栅的通用、坚固的样品架,在相同样品点对不同拉曼激发波长进行了这项对比研究。展示并讨论了紫外共振拉曼光谱在灵敏度和选择性方面的总体优势。最后,建议将这项新技术应用于设想中的以天体生物学为重点的太空任务的紫外拉曼仪器。

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