节点文献

新型含钆硫化物玻璃的制备与性能

PREPARATION AND PROPERTIES OF NOVEL Gd-CONTAINING SULFIDE GLASSES

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 聂佳相赵东辉陈玮陈国荣ADAM Jean-Luc

【Author】 NIE Jiaxiang~(1), ZHAO Donghui~(1), CHEN Wei~(1), CHEN Guorong~(1), ZHANG Xianghua~(2), MA Hongli~(2), ADAM Jean-Luc~(2) (1. Department of Inorganic Materials, East China University of Science and Technology, Shanghai 200237, China; 2. Laboratoire des Verres et Céramiques, Universite de Rennes I, Rennes Cedex, France)

【机构】 华东理工大学无机材料系Laboratoire des Verres et CéramiquesUniversite de Rennes I 上海200237上海200237Rennes CedexFrance

【摘要】 研究了新型含钆硫化物玻璃 ,测试了玻璃的红外透射光谱、显微硬度、密度等性能以及XRD ,DSC曲线。实验结果表明 :Gd在GeS二元系统玻璃的富锗区具有较好的溶解性 ,最高引入量可达 5 % (摩尔分数 ) ,但随引入量的增加析晶倾向增强。含钆硫化物的玻璃形成能力还随网络形成体Ge含量的减少而降低。含钆硫化物玻璃的透红外性能与GeS二元系统玻璃相似 ,但氧杂质吸收峰被消除或减弱 ,截止波长略有红移。其原因为前者可归于钆原子的较高负电极电位特性 ,后者与系统声子能量的降低有关。含钆玻璃的转变温度和显微硬度显著提高 ,这与玻璃结构的致密化和微晶化有关。

【Abstract】 The novel Gd-containing sulfide glasses were investigated. Some glass properties including infrared spectra, microhardness, density and the curves of XRD and DSC were tested. Experimental results show that Gd cations have fairly good solubility in the Ge-rich region of the GeS binary system glass where the maximum Gd content can be reached to 5% in mole, but the tendency of crystallization rises with the increase of Gd content. The glass forming ability decreases as the content of network former Ge decreases. It is found that as the result of Gd-induced the oxygen impurities absorption bands are removed and weakened, which is attributed to the higher negative electrode potential of Gd atom. The IR cut-off edge of the Gd-containing glass shows a slight shift to the longer wavelength due to the heavier reduced mass of the system. The notable increases of glass microhardness and transition temperature are due to Gd addition, which is related to the joint effects of structure densification and microcrystallization process.

【基金】 上海市重点学科建设项目资助
  • 【文献出处】 硅酸盐学报 ,Journal of The Chinese Ceramic Society , 编辑部邮箱 ,2004年03期
  • 【分类号】TQ171.6
  • 【被引频次】10
  • 【下载频次】182
节点文献中: 

本文链接的文献网络图示:

本文的引文网络