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Temperature-Induced Structural Modifications Between Alkali Borate Glasses and Melts.

机译:硼酸碱玻璃和熔体之间的温度诱导结构改性。

摘要

High-temperature neutron diffraction and Raman spectra have been obtained on M2O–2B2O3 (M=Li, Na, K) glasses and melts. Both techniques indicate a coordination change of boron atoms: the tetrahedral boron sites present in the glasses are converted into triangular boron sites. These changes of the borate network yield modifications of the alkali environment, as assessed for Li using the isotopic substitution technique. We observe that Li atoms are in a charge-compensating position in the glass and in a modifying position in the liquid. These structural modifications have important implications toward understanding the physical properties of borate melts.
机译:在M2O–2B2O3(M = Li,Na,K)玻璃和熔体上获得了高温中子衍射和拉曼光谱。两种技术都表明了硼原子的配位变化:玻璃中存在的四面体硼位点转化为三角形硼位点。硼酸盐网络的这些变化产生了碱性环境的改变,如使用同位素取代技术对锂进行的评估。我们观察到Li原子在玻璃中处于电荷补偿位置,在液体中处于修饰位置。这些结构修饰对于理解硼酸盐熔体的物理性质具有重要意义。

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