傅立叶红外光谱法监测硅辉石晶体中杂质及其相互作用

Rosanna Capelletti, Paola Beneventi, László Kovács, Andrea Ruffini
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引用次数: 5

摘要

采用9k高分辨率(0.04 cm-1)吸收光谱研究了Bi12SiO20 (BSO)、Bi12GeO20 (BGO)和Bi12TiO20 (BTO)硅矿单晶中Si4+、Ge4+、P5+、V5+、Mn5+和S6+等杂质(Im)对振动谱的影响。对于ImO4四面体中的杂质,检测到多达三声子跃迁(F模式的泛音以及F和A模式的组合)。监测弱非调和效应。由于a) OH的拉伸(典型的未掺杂材料)和b)本征MeO4 (Me = Si, Ge和Ti)和ImO4四面体的多声子跃迁,额外的Im杂质的存在改变了谱线。由于Im-OH的相互作用,新的波段被监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FTIR Spectroscopy to Monitor Impurities and Impurity-Interactions in Sillenite Crystals

High resolution (0.04 cm–1) absorption spectroscopy is applied at 9 K to study the role played on the vibrational spectra by impurities (Im), as Si4+, Ge4+, P5+, V5+, Mn5+, and S6+, in Bi12SiO20 (BSO), Bi12GeO20 (BGO), and Bi12TiO20 (BTO) sillenite single crystals. Up to three-phonon transitions (overtones of the F mode and combination of F and A modes) are detected for the impurities in ImO4 tetrahedra. Weak anharmonicity effects are monitored. The presence of additional Im impurities modify the lines due to a) the stretching of OH, typical of the undoped material, and b) the multi-phonon transitions either of the intrinsic MeO4 (Me = Si, Ge, and Ti) and of the ImO4 tetrahedra. New bands are monitored due to the Im-OH interaction.

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