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首页> 外文期刊>Optical Materials >Effect of alkaline modifiers on the structural, optical and crystallization properties of niobium germanate glasses and glass-ceramics
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Effect of alkaline modifiers on the structural, optical and crystallization properties of niobium germanate glasses and glass-ceramics

机译:碱性改性剂对铌锗玻璃和玻璃陶瓷结构,光学和结晶性能的影响

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Alkali niobium germanate glasses were prepared by melt-quenching in the ternary systems 75GeO(2)-15Nb(2)O(5)-10M(2)O with M = Li, Na, K, Rb and Cs. Thermal properties of these glasses and related glass-ceramics are strongly dependent on the alkaline modifier. Structural investigations by Raman allowed to determine that the alkali radius has an influence on the number of non-bridging oxygens and consequently on the average glass network connectivity. Raman spectra of sodium, potassium and rubidium germanate glass-ceramics exhibited slight changes when compared to the pristine glass and the new Raman features can be attributed to a 3D NbO6 network similar to orthorhombic niobium oxide. Characterization of the heat-treated glasses allowed to determine the crystalline phases precipitated in the samples and it has been shown that a single perovskite bronze-like phase of general formula M2Nb5O21 can be obtained in Na, K, and Rb-containing glasses. Luminescent properties of Eu3+-doped glasses pointed out a non-regular tendency where sodium-based glass seems to be the inflexion point of luminescent data with higher asymmetry around Eu3+ ions and higher quantum efficiency. In transparent glass-ceramics, the Eu3+ luminescent properties are clearly modified in the Na- and K-based samples with lower symmetry and quantum efficiency after heat-treatment. Such optical behavior is attributed to Eu3+ migration in the perovskite crystalline phase with highly distorted Eu3+ sites and shorter Eu3+-Eu3+ distances.
机译:通过用M = Li,Na,K,Rb和Cs,通过在三元体系75GeO(2)-15nb(2)O(5)-10m(2)O中熔化淬火制备碱铌锗玻璃。这些玻璃和相关玻璃陶瓷的热性能强烈依赖于碱性改性剂。拉曼的结构研究允许确定碱半径对非桥接氧的数量产生影响,从而对平均玻璃网络连接。与原始玻璃相比,钠,钾和铷锗玻璃陶瓷的拉曼光谱表现出微小的变化,并且新的拉曼特征可归因于类似于正交铌的3D NBO6网络。所允许的热处理玻璃的表征在样品中沉淀出沉淀的结晶相,并且已经显示出通式M2NB5O21的单个钙钛石晶样相可以在Na,K和含RB的玻璃中获得。 EU3 +掺杂眼镜的发光特性指出了非常规趋势,其中钠基玻璃似乎是发光数据的亮度点,其围绕Eu3 +离子的不对称性更高,量子效率更高。在透明的玻璃陶瓷中,在热处理后的对称性和量子效率较低的基于NA和K基样品中清楚地修改EU3 +发光性能。这种光学行为归因于钙钛矿结晶相中的Eu3 +迁移,具有高度扭曲的EU3 +位点,较短的Eu3 + -eU3 +距离。

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