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通过扩展拓扑约束理论设计的独特钠磷硅酸盐玻璃。

Unique sodium phosphosilicate glasses designed through extended topological constraint theory.

作者信息

Zeng Huidan, Jiang Qi, Liu Zhao, Li Xiang, Ren Jing, Chen Guorong, Liu Fude, Peng Shou

机构信息

Key Laboratory for Ultrafine Materials of Ministry of Education, School of Materials Science and Engineering, East China University of Science and Technology , Shanghai 200237, China.

出版信息

J Phys Chem B. 2014 May 15;118(19):5177-83. doi: 10.1021/jp5018357. Epub 2014 May 5.

Abstract

Sodium phosphosilicate glasses exhibit unique properties with mixed network formers, and have various potential applications. However, proper understanding on the network structures and property-oriented methodology based on compositional changes are lacking. In this study, we have developed an extended topological constraint theory and applied it successfully to analyze the composition dependence of glass transition temperature (Tg) and hardness of sodium phosphosilicate glasses. It was found that the hardness and Tg of glasses do not always increase with the content of SiO2, and there exist maximum hardness and Tg at a certain content of SiO2. In particular, a unique glass (20Na2O-17SiO2-63P2O5) exhibits a low glass transition temperature (589 K) but still has relatively high hardness (4.42 GPa) mainly due to the high fraction of highly coordinated network former Si((6)). Because of its convenient forming and manufacturing, such kind of phosphosilicate glasses has a lot of valuable applications in optical fibers, optical amplifiers, biomaterials, and fuel cells. Also, such methodology can be applied to other types of phosphosilicate glasses with similar structures.

摘要

磷酸硅钠玻璃呈现出具有混合网络形成体的独特性质,并具有多种潜在应用。然而,目前缺乏对基于成分变化的网络结构和面向性能方法的恰当理解。在本研究中,我们开发了一种扩展的拓扑约束理论,并成功地将其应用于分析磷酸硅钠玻璃的玻璃化转变温度(Tg)和硬度与成分的依赖性。研究发现,玻璃的硬度和Tg并不总是随着SiO2含量的增加而增大,在SiO2的某一含量下存在最大硬度和Tg。特别是,一种独特的玻璃(20Na2O - 17SiO2 - 63P2O5)具有较低的玻璃化转变温度(589 K),但仍具有相对较高的硬度(4.42 GPa),这主要归因于高配位网络形成体Si((6))的高比例。由于其成型和制造方便,这种磷酸硅钠玻璃在光纤、光放大器、生物材料和燃料电池等方面有许多有价值的应用。此外,这种方法可应用于其他具有类似结构的磷酸硅钠玻璃类型。

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