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首页> 外文期刊>Physics and Chemistry of Minerals >Experimental and theoretical study of the structural environment of magnesium in minerals and silicate glasses using X-ray absorption near-edge structure
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Experimental and theoretical study of the structural environment of magnesium in minerals and silicate glasses using X-ray absorption near-edge structure

机译:X射线吸收近缘结构对矿物和硅酸盐玻璃中镁结构环境的实验和理论研究

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摘要

X-ray absorption spectroscopy at the Mg K-edge is used to obtain information on magnesium environment in minerals, silicate and alumino-silicate glasses. First-principles XANES calculations are performed for minerals using a plane-wave density functional formalism with core-hole effects treated in a supercell approach. The good agreement obtained between experimental and theoretical spectra provides useful information to interpret the spectral features. With the help of calculation, the position of the first peak of XANES spectra is related to both coordination and polyhedron distortion changes. In alumino-silicate glasses, magnesium is found to be mainly 5-fold coordinated to oxygen whatever the aluminum saturation index value. In silicate glasses, magnesium coordination increases from 4 in Cs-, Rb- and K-bearing glasses to 5 in Na- and Li-bearing glasses but remains equal as the polymerization degree of the glass varies. The variation of the C feature (position and intensity) is strongly related to the alkali type providing information on the medium range order.
机译:Mg K边缘的X射线吸收光谱用于获得有关矿物,硅酸盐和硅铝酸盐玻璃中镁环境的信息。使用平面波密度泛函和超级孔方法处理的核孔效应,对矿物进行第一性原理XANES计算。实验光谱和理论光谱之间的良好一致性为解释光谱特征提供了有用的信息。借助计算,XANES光谱的第一个峰的位置与配位和多面体畸变变化有关。在铝硅酸盐玻璃中,无论铝饱和指数值如何,镁与氧的配位主要是5倍。在硅酸盐玻璃中,镁的配比从含Cs,Rb和K的玻璃中的4增加到含Na和Li的玻璃中的5,但随着玻璃的聚合度变化而保持相等。 C特征(位置和强度)的变化与提供有关中等范围顺序信息的碱金属类型密切相关。

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