碱金属
化学
协调数
粘结长度
四面体
中子散射
分数(化学)
中子
结晶学
分子几何学
物理化学
粘结强度
分子
分析化学(期刊)
化学键
系列(地层学)
显著性差异
小角中子散射
散射
核化学
核磁共振波谱
作者
Anders K. R. Christensen,Oliver L. G. Alderman,Randall E. Youngman,Søren S. Sørensen,Morten M. Smedskjær
标识
DOI:10.1021/acs.inorgchem.5c05723
摘要
The structural role of alkali modifiers (Li, Na, and K) in aluminoborosilicate glasses remains incompletely understood despite their widespread industrial use. Here, we investigate a series of glasses with compositions 20M2O-xB2O3-(20-x)Al2O3-60SiO2 (M = Li, Na, K; x = 5, 10, 15, with additional x = 0 and 20 for Na). Lithium-containing samples are prepared in duplicate using isotope-enriched compositions to enable isotopic-difference neutron diffraction. Solid-state NMR shows that ∼98% of Al is tetrahedrally coordinated, independent of alkali type, while the fraction of tetrahedral B increases with decreasing alkali-field strength and increasing B/Al ratio. Neutron total scattering data are analyzed by peak fitting of real-space correlation functions, using NMR-derived coordination numbers as constraints. Subtle variations in B-O, Si-O, and Al-O bond lengths are observed, and by the isotopic difference method, we find that the Li-O bonds exhibit an asymmetric bond length distribution and an increasing coordination number with increasing B/Al ratio. A similar trend is observed for the Na-O bonds, exploiting the improper difference method. These results provide new insight into how alkali modifiers influence the structure of aluminoborosilicate glasses, which will be helpful for establishing composition-structure-property relations.
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