锗酸钠异常及其温度依赖性:锗酸钠玻璃的超高场17O核磁共振光谱研究

Q1 Physics and Astronomy
Sabyasachi Sen , Jonathan F. Stebbins , Yijue Xu , Ivan Hung , Zhehong Gan
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引用次数: 0

摘要

在超高场(35.2T)下,用高分辨率17O NMR研究了4≤x≤28的(Na2O)x(GeO2)100-x玻璃中的氧形态。x≤18的玻璃结构由氧原子桥接两个四配位GeIV原子(O44)或一个GeIV和另一个六配位GeVI原子(O46)组成。在该组成范围内,O46∶O44的比例随着Na2O含量的增加而单调增加。Na2O的进一步添加导致O46的降低,并伴随着非桥接氧(NBO)原子浓度的升高。由此产生的Ge原子平均配位数的组成变化与这些玻璃中密度的非单调演化和锗酸盐异常有关。另一方面,虚拟温度的增加导致GeVI的净转化→ 这些玻璃中的GeIV+NBO,被认为是锗酸盐液体中与温度相关的构型熵的来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Germanate anomaly and its temperature dependence: An ultra-high field 17O NMR spectroscopic study of sodium germanate glasses

The oxygen speciation in (Na2O)x(GeO2)100-x glasses with 4 ≤ x ≤ 28 is studied using high-resolution 17O NMR spectroscopy at ultra-high field (35.2 T). The structure of glasses with x ≤ 18 consists of oxygen atoms bridging either two four-coordinated GeIV atoms (O44) or a GeIV and another six-coordinated GeVI atom (O46). The O46: O44 ratio monotonically increases with increasing Na2O content in this composition range. Further addition of Na2O results in a lowering of O46 and in a concomitant rise in the concentration of non-bridging oxygen (NBO) atoms. The resulting compositional variation in the average coordination number of Ge atoms is associated with the non-monotonic evolution of density and the germanate anomaly in these glasses. On the other hand, increasing fictive temperature results in a net conversion of GeVI → GeIV + NBO in these glasses, which is argued to be a source of temperature dependent configurational entropy in germanate liquids.

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来源期刊
Journal of Non-Crystalline Solids: X
Journal of Non-Crystalline Solids: X Materials Science-Materials Chemistry
CiteScore
3.20
自引率
0.00%
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50
审稿时长
76 days
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