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Structural study of tungstate fluorophosphate glasses by Raman and X-ray absorption spectroscopy

机译:钨酸氟磷酸盐玻璃的拉曼光谱和X射线吸收光谱研究

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Transparent glasses were synthesized in the NaPO3-BaF2 WO3 tertiary system and several structural characterizations were performed by X-ray absorption spectroscopy (XANES) at the tungsten L-I and L-III absorption edges and by Raman spectroscopy. Special attention was paid to the coordination state of tungsten atoms in the vitreous network.XANES investigations showed that tungsten atoms are only six-fold coordinated (octahedra WO6) and that these glasses are free of tungstate tetrahedra (WO4).In addition, Raman spectroscopy allowed to identify a break in the linear phosphate chains as the amount of WO3 increases and the formation of P-O-W bonds in the vitreous network indicating the modifier behavior of WO6 octahedra in the glass network. Based on XANES data, we suggested a new attribution of several Raman absorption bands which allowed to identify the presence of W-O- and W=O terminal bonds and a progressive apparition of W-O-W bridging bonds for the most WO3 concentrated samples (≥ 30% molar) due to the formation of WO6 clusters. © 2004 Elsevier Inc. All rights reserved.
机译:在NaPO3-BaF2 WO3三级体系中合成了透明玻璃,并通过X射线吸收光谱(XANES)在钨L-I和L-III吸收边缘处以及拉曼光谱进行了一些结构表征。特别注意玻璃体网络中钨原子的配位状态.XANES研究表明,钨原子的配位只有六倍(八面体WO6),并且这些玻璃不含钨酸四面体(WO4)。此外,拉曼光谱当WO 3的量增加和在玻璃网络中POW键的形成时,可以确定线性磷酸酯链的断裂,表明WO6八面体在玻璃网络中的改性行为。根据XANES数据,我们提出了几个拉曼吸收带的新属性,这些特征带可以识别WO-和W = O末端键的存在,以及对大多数WO3浓缩样品(≥ 30%摩尔比)的WOW桥键的逐步鉴别。 )是由于WO6团簇的形成。 &复制; 2004 Elsevier Inc.保留所有权利。

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