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High temperature Raman spectra of sodium disilicate crystal, glass and its liquid

机译:二硅酸钠晶体,玻璃及其液体的高温拉曼光谱

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摘要

Raman spectra of Na2Si2O5 in solid and liquid states from room temperature to 1773 K were measured to observe phase transition and analyze the temperature-dependent variations of the structure units, five kinds of SiO4 tetrahedrons, which are defined as Q(4), Q(3), Q(2), Q(1) and Q(0) species corresponding to the number of bridging oxygen binding to each Si. A pulsed copper vapor laser was used as laser source coupled with time resolved detection system to eliminate the dense thermal emission background while temperature was >1273 K. Temperature-dependent Raman spectra can clearly indicate melting point of a crystal around 1143 K. Gaussian deconvolutions of complex stretching vibrational bands of crystal and amorphous states (glass and liquid) were described. Raman sensitivity factors were introduced to calculate the mole fractions of the different SiO4 tetrahedrons. There is a decrease of Q(3) species and an increase of Q(4) and Q(2) species with increasing temperature. And after melting, the ratio of the components remain unchanged. Q(3) species decomposes again after about 1573 K. More Q(n) species would form with increasing temperature. Although the Q(n) distribution of the glass is similar to that of the liquid of melting temperature, T-m similar to 1143 K, the liquid structure has a greater disorder than that of the glass. (C) 2001 Published by Elsevier Science B.V. [References: 37]
机译:测量了从室温到1773 K的固态和液态Na2Si2O5的拉曼光谱,观察了相变并分析了结构单元(定义为Q(4),Q( 3),Q(2),Q(1)和Q(0)种类对应于与每个Si结合的桥连氧的数量。脉冲铜蒸气激光器用作激光源,结合时间分辨检测系统,消除了温度> 1273 K时的致密热辐射背景。温度相关的拉曼光谱可以清楚地指示晶体的熔点为1143K。描述了晶体和非晶态(玻璃和液体)的复杂拉伸振动带。引入拉曼灵敏度因子来计算不同SiO4四面体的摩尔分数。随着温度的升高,Q(3)种类减少,Q(4)和Q(2)种类增加。并且在熔融之后,组分的比例保持不变。 Q(3)物种在约1573 K后再次分解。随着温度升高,将形成更多Q(n)物种。尽管玻璃的Q(n)分布与熔化温度的液体T-m的分布相似,T-m与1143 K相似,但液体结构的无序性比玻璃大。 (C)2001年由Elsevier Science B.V.出版[参考文献:37]

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