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首页> 外文期刊>Journal of geophysical research. Planets >Characterizing amorphous silicates in extraterrestrial materials: Polymerization effects on Raman and mid-IR spectral features of alkali and alkali earth silicate glasses
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Characterizing amorphous silicates in extraterrestrial materials: Polymerization effects on Raman and mid-IR spectral features of alkali and alkali earth silicate glasses

机译:表征外星材料中的无定形硅酸盐:聚合对碱和碱土硅酸盐玻璃的拉曼和中IR光谱特征的影响

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摘要

Amorphous silicates are common in extraterrestrial materials, especially in carbonaceous chondrites of petrologic types 1 and 2. In addition, high percentage of amorphous components and poorly crystalline phyllosilicates were found in the mudstones at Gale Crater by the CheMin instruments on board of Mar Curiosity rover, which illustrates the importance of characterizing amorphous silicates in future planetary surface explorations. The structure of an amorphous silicate can vary in two aspects: the degree of polymerization and the degree of crystallinity. Here we present the first phase study on characterizing synthetic alkali and alkali earth silicate glasses with different degrees of polymerization by using vibration spectroscopy. Compared with crystalline silicates, their Raman and mid-IR spectra show broad spectral peaks but have the similar peak positions. We find that a change in the degree of polymerization of these silicate glasses affects their Raman band positions, especially the ratio of Raman band intensities, as well as the positions of the Christiansen feature and reststrahlen bands in their mid-IR absorbance spectra. Based on these observations, we establish a calibration curve that could enable semiquantification of the polymerization degree of silicate glasses in planetary surface/subsurface materials during future robotic planetary surface exploration missions.
机译:非晶态硅酸盐在外星材料中很常见,尤其是在岩石学型1和2的碳质软管中,此外,在Maroitosity Rover Rover Rover,Mar Chalein Instruments of Mar Choriosity Rover,Mar Chale Instruments在Gale Crater的泥石石中发现了高比例的无定形成分和晶体质纤维素较差,Mar Fuliosity Rover Rover,Mar Coliosity Rover,Marsoity Rover,这说明了表征未来行星表面探索中无定形硅酸盐的重要性。无定形硅酸盐的结构在两个方面可能有所不同:聚合程度和结晶度。在这里,我们介绍了关于通过使用振动光谱法不同程度的聚合化的合成碱和碱硅酸盐玻璃表征的第一阶段研究。与晶体硅酸盐相比,其拉曼和中红外光谱显示出较大的光谱峰,但具有相似的峰位置。我们发现,这些硅酸盐玻璃的聚合程度的变化会影响其拉曼带的位置,尤其是拉曼带强度的比例,以及在其中IIR的吸光光谱中的Christiansen特征和RESTSTRAHLEN带的位置。基于这些观察结果,我们建立了一个校准曲线,可以在未来的机器人行星表面勘探任务中半剂量化行星表面/地下材料中硅酸盐玻璃的聚合度。

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