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On the induction of homogeneous bulk crystallization in Eu-doped calcium aluminosilicate glass by applying simultaneous high pressure and temperature

机译:同时施加高压和高温诱导掺Eu铝硅酸钙玻璃中的均匀块状结晶

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摘要

From initial calcium aluminosilicate glass, transparent glass-ceramics have been successfully synthesized under simultaneous high pressure and temperature (SHPT). Possible homogeneous volumetric crystallization of this glassy system, which was not achieved previously by means of conventional heat treatment, has been put in evidence with a SHPT procedure. Structural, mechanical, and optical properties of glass and glass-ceramic obtained were investigated. Raman spectroscopy and X-ray diffraction allowed to identify two main crystalline phases: merwinite [Ca_3Mg(SiO_4)_2] and diopside [CaMgSi_2O_6]. A Raman scanning profile showed that the formation of merwinite is quite homogeneous over the bulk sample. However, the sample surface also contains significant diopside crystals. Instrumented Berkovich nanoindentation was applied to determine the effect of SHPT on hardness from glass to glass-ceramic. For Eu-doped samples, the broadband emission due to 4f~65d~1 → 4f~7 transition of Eu~(2+) was studied in both host systems. Additionally, the ~5Do → ~7F_J transition of Eu~(3+) was used as an environment probe in the pristine glass and the glass-ceramic.
机译:从最初的铝硅酸钙玻璃,已经成功地在同时高压和高温(SHPT)的条件下成功合成了透明玻璃陶瓷。这种玻璃状体系可能的均相体积结晶是以前通过常规热处理无法实现的,已经通过SHPT程序证明了这一点。研究得到的玻璃和玻璃陶瓷的结构,机械和光学性能。拉曼光谱法和X射线衍射可以鉴定出两个主要的结晶相:硫铁矿[Ca_3Mg(SiO_4)_2]和透辉石[CaMgSi_2O_6]。拉曼扫描曲线表明,在整个样品上,硫汞矿的形成是相当均匀的。但是,样品表面还含有大量的透辉石晶体。应用仪器化的Berkovich纳米压痕测定从玻璃到玻璃陶瓷的SHPT对硬度的影响。对于掺杂Eu的样品,研究了在两种宿主系统中由于Eu〜(2+)的4f〜65d〜1→4f〜7跃迁引起的宽带发射。另外,Eu〜(3+)的〜5Do→〜7F_J跃迁被用作原始玻璃和玻璃陶瓷中的环境探针。

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  • 来源
    《Journal of Applied Physics》 |2016年第24期|245901.1-245901.7|共7页
  • 作者单位

    Institut Lumiere Matiere, UMR 5306 CNRS-Universite Lyon 1, Universite de Lyon, 69622 Villeurbanne, France,Departamento de Fisica, Universidade Estadual de Maringa, 87020900, Maringa, PR, Brazil;

    Department of Materials Science, Glass and Ceramics, University of Erlangen Nuernberg, Martensstr. 5, 91058 Erlangen, Germany;

    Institut Lumiere Matiere, UMR 5306 CNRS-Universite Lyon 1, Universite de Lyon, 69622 Villeurbanne, France;

    Institut Lumiere Matiere, UMR 5306 CNRS-Universite Lyon 1, Universite de Lyon, 69622 Villeurbanne, France;

    Departamento de Fisica, Universidade Estadual de Maringa, 87020900, Maringa, PR, Brazil;

    Departamento de Fisica, Universidade Estadual de Maringa, 87020900, Maringa, PR, Brazil;

    Departamento de Fisica, Universidade Estadual de Maringa, 87020900, Maringa, PR, Brazil;

    Grupo de Espectroscopia Optica e Fototermica, Universidade Estadual de Mato Grosso do Sul, C.P. 351, Dourados, MS, Brazil;

    Grupo de Espectroscopia Optica e Fototermica, Universidade Estadual de Mato Grosso do Sul, C.P. 351, Dourados, MS, Brazil;

    Departamento de Fisica, Universidade Estadual de Maringa, 87020900, Maringa, PR, Brazil;

    Institut Lumiere Matiere, UMR 5306 CNRS-Universite Lyon 1, Universite de Lyon, 69622 Villeurbanne, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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