(Li2O)x(B2O3)100-x和(Na2O)x(B2O3)100-x硼酸盐玻璃的环状形貌与拓扑相和熔体动力学的联系

IF 3.5 3区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS
Kandasamy Vignarooban, Charles Skipper, Aaron Welton, Punit Boolchand
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引用次数: 0

摘要

硼酸锂(Li2O)x(B2O3)100-x和硼酸钠(Na2O)x(B2O3)100-x玻璃的拉曼散射和量热测量;x & lt;研究了玻璃分子结构对拓扑相和熔体动力学的影响。对于(Na2O)x(B2O3)100-x玻璃,观察到玻璃化转变时弛豫焓的宽方阱变化,在20% <中显示中间相(IP);x & lt;40%的苏打水。拉曼结果表明,IP与六个独特的等静力刚性局部结构(ISRLSs)的存在相关,这些结构具有特征的环状形态,随着钠浓度的增加而依次出现在IP上。此外,几个狭义定义的类高斯脆性指数m,极小值在15 <;m & lt;随着摩尔量x%的增加,它们依次出现,直接对应于六分子环基ISRLS的化学计量。在(Li2O)x(B2O3)100-x中观察到类似的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linking the ring-morphology of (Li2O)x(B2O3)100-x and (Na2O)x(B2O3)100-x borate glasses with topological phases and melt dynamics
Raman scattering and calorimetric measurements on lithium borate, (Li2O)x(B2O3)100-x, and sodium borate, (Na2O)x(B2O3)100-x, glasses, 0 < x < 45 %, were undertaken to elucidate the role of glass molecular structure on the topological phases and melt dynamics. For (Na2O)x(B2O3)100-x glasses, a wide square-well like variation of the enthalpy of relaxation at the glass transition was observed, showing an intermediate phase (IP) in the 20 % < x < 40 % range of soda. Raman results reveal the IP to be correlated with the existence of six unique Isostatically Rigid Local Structures (ISRLSs) which have characteristic ring morphologies appearing sequentially with increasing soda concentration across the IP. Additionally, several narrowly defined Gaussian-like fragility index, m, minima are observed to manifest in the 15 < m < 20 range, which appear sequentially with increasing mol x% and directly correspond to the stoichiometry of the six molecular ring based ISRLS. Parallel results are observed for (Li2O)x(B2O3)100-x.
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来源期刊
Journal of Non-crystalline Solids
Journal of Non-crystalline Solids 工程技术-材料科学:硅酸盐
CiteScore
6.50
自引率
11.40%
发文量
576
审稿时长
35 days
期刊介绍: The Journal of Non-Crystalline Solids publishes review articles, research papers, and Letters to the Editor on amorphous and glassy materials, including inorganic, organic, polymeric, hybrid and metallic systems. Papers on partially glassy materials, such as glass-ceramics and glass-matrix composites, and papers involving the liquid state are also included in so far as the properties of the liquid are relevant for the formation of the solid. In all cases the papers must demonstrate both novelty and importance to the field, by way of significant advances in understanding or application of non-crystalline solids; in the case of Letters, a compelling case must also be made for expedited handling.
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