A contribution to the exploration of the chemical durability, thermal stability, and structural ability of glasses from the Fe\(_{2}\)O\(_{3}\)-K\(_{2}\)O-MoO\(_{3}\)-P\(_{2}\)O\(_{5}\) quaternary system

A. Er-rafai, Y. Alaoui, M. Laourayed, M. Ounacer, Mouloud El Moudane, Mohammed Sajieddine, Abdelkbir Bellaouchou
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Abstract

The relationships between the properties and structure of xFe2O3-(40-x)K2O-10MoO3-50P2O5 glasses have been reported in this paper. Homogeneous glasses are formed for different Fe2O3 contents. The density and molar volume evolution of these glasses shows that Fe2O3 acts as a glass former and strengthens the structural bonds of the glass. Experimental 57Fe Mössbauer spectroscopy graphs suggest the existence of divalent Iron (FeII) and trivalent Iron (FeIII). The boost in chemical durability agrees with the growth in glass transition temperature due to more powerful bonding in the structural network. P-O-Fe bonds replace P-O-P bonds when Fe2O3 is present in the phosphate network.
对探索Fe(_{2}\)O(_{3}\)-K(_{2}\)O-MoO(_{3}\)-P(_{2}\)O(_{5})四元体系玻璃的化学耐久性、热稳定性和结构能力的贡献
本文报告了 xFe2O3-(40-x)K2O-10MoO3-50P2O5 玻璃的性质与结构之间的关系。不同的 Fe2O3 含量会形成均质玻璃。这些玻璃的密度和摩尔体积演变表明,Fe2O3 起到了玻璃成形剂的作用,并加强了玻璃的结构键。实验得出的 57Fe 莫斯鲍尔光谱图表明存在二价铁(FeII)和三价铁(FeIII)。化学耐久性的提高与玻璃转化温度的升高是一致的,这是因为结构网络中存在更强的键。当磷酸网络中存在 Fe2O3 时,P-O-Fe 键取代了 P-O-P 键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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