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Cation Distribution in Mixed-Alkali Silicate Glasses. NMR Studies by <sup>23</sup>Na−{<sup>7</sup>Li} and <sup>23</sup>Na−{<sup>6</sup>Li} Spin Echo Double Resonance

Becky GeeDepartment of Chemistry, University of California, Santa Barbara, California 93106Hellmut EckertDepartment of Chemistry, University of California, Santa Barbara, California 93106
1996en
ABI

Аннотация

The relative arrangement of sodium and lithium ions in mixed-alkali silicate glases of composition [(Li2O)1-y(Na2O)y]x[SiO2]1-x (y = 0.25, 0.50, and 0.75; x = 0.40 and 0.50) is studied by 23Na−{7Li} spin echo double-resonance (SEDOR) NMR spectroscopy, supplemented by additional 23Na−{6Li} experiments on isotopically labeled materials. The experimental results are compared with various cation distribution scenarios and found to be quantitatively most consistent with a model in which lithium and sodium ions occupy random positions on a cubic lattice mimicking a uniform (homogeneous) spatial cation distribution. The experimental data give no evidence for preferred interactions among unlike cations or cation-pairing models previously invoked to describe the structure of mixed-alkali glasses. To the contrary, if the overall cation distribution were to diverge from homogeneous, the data would be most consistent with preferred interactions among like cations.

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