Role of Aluminum Ion in the Structure of Alkaline Earth Aluminoborate Glasses

A. Naruse, Y. Abe, A. Takami
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引用次数: 5

Abstract

The composition dependence of some physical properties of Cabal and Babal glasses is discussed for the purpose of elucidating the role of aluminum ion in the structure of alkaline earth aluminoborate glasses. To interpret the experimental results on the basis of the glass structure, three rules are assumed about interlinking relation among AlO4 tetrahedron, BO4 tetrahedron and BO3 triangle as follows. (Rule 1) In the structure of alkaline earth aluminoborate glass, when each content of MO and B2O3 in the glass exceeds a definite value, preferential interlinking between AlO4 and BO4 groups is made into the formation of a tetrahedron couple comprising those two kinds of tetrahedral group. (Rule 2) The interlinked tetrahedron couple is impossible to exist only by itself, but is forced to link to BO3 triangles at its six corners in any case. Hence, the formation of AlB3O7
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铝离子在碱土酸铝玻璃结构中的作用
为了阐明铝离子在碱土硼酸铝玻璃结构中的作用,讨论了Cabal和Babal玻璃某些物理性质的组分依赖关系。为了在玻璃结构的基础上解释实验结果,假设AlO4四面体、BO4四面体和BO3三角形之间的互连关系有三个规律:(规则1)在碱土硼酸铝玻璃的结构中,当玻璃中MO和B2O3的含量均超过一定值时,AlO4和BO4基团之间优先互联,形成由这两种四面体基团组成的四面体偶对。(规则2)相互连接的四面体对不可能单独存在,但在任何情况下都必须在其六个角连接到BO3三角形。因此,形成了al3o7
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