首页 | 本学科首页   官方微博 | 高级检索  
     检索      

高温高压下SrB4O7:Eu2+玻璃的晶化
引用本文:刘宏建,刘维娜.高温高压下SrB4O7:Eu2+玻璃的晶化[J].高压物理学报,1994,8(3):161-165.
作者姓名:刘宏建  刘维娜
作者单位:吉林大学物理系,中国科学院长春物理所,中国科学院国际材料物理中心,中国高等科学技术中心(世界实验室)
摘    要: 利用X射线衍射和Eu2+发射光谱方法研究了非晶玻璃SrB4O7在高温高压下的晶化。结果表明:在5.0 GPa压力下,200 ℃仍为玻璃态,只有几个强度极低的小峰,表明有晶化的迹象;600 ℃时已基本晶化,但为SrB4O7正交相与SrB4O7高压立方相二相共存;当温度提高到1 000 ℃时,晶化成了近单相的与常压SrB4O7粉末晶体相同的正交结构。伴随晶化度的加强,Eu2+发射强度增强,与X射线衍射结果相一致。

关 键 词:SrB4O7  高温高压  晶化  Eu2+发射光谱
收稿时间:1993-06-29;

Crystallization Process of Amorphous SrB4O7:Eu2+ under High Pressure and High Temperature
LIU Hong-Jian,LIU Wei-Na,GUAN Zhong-Su,SUN Shu-Lan,SU Wen-Hui.Crystallization Process of Amorphous SrB4O7:Eu2+ under High Pressure and High Temperature[J].Chinese Journal of High Pressure Physics,1994,8(3):161-165.
Authors:LIU Hong-Jian  LIU Wei-Na  GUAN Zhong-Su  SUN Shu-Lan  SU Wen-Hui
Institution:1. Department of Physics, Jilin University, Changchu 130023, China;2. Changchun Institute of Physics, Chinese Academy of Sciences, Changchun 130021, China;3. ICMP, Chinese Academy of Sciences, Shenyang 110015, China;4. CCAST (World Laboratory), Beijing 100080
Abstract:The crystallization process of amorphous SrB4O7 under high pressure were studied by using X-ray diffraction and Eu2+ emission spectra. X-ray diffraction results show that under the pressure of 5.0 GPa, at 200 ℃ there exists a few small diffraction peaks with very low intensity, indicating trace crystallization. At 600 ℃, however, the crystallization process basically completes, it becomes a mixture of two phases, one is an orthorhombic SrB4O7 and the other cubic SrB4O7; as the temperature increasing to 1 000 ℃, the sample crystallizes to single phase SrB4O7 with a structure the same as the powder crystal sample's prepared under atmosphere. The above results were further confirmed by Eu2+ emission spectra obsenations: the intensity of Eu2+ emission peak at 370nm increased obviously with the crystallinity of the sample.
Keywords:4  high pressure and high temperature  crystallization  2+
本文献已被 CNKI 维普 等数据库收录!
点击此处可从《高压物理学报》浏览原始摘要信息
点击此处可从《高压物理学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号