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Size of the rare-earth ions: a key factor in phase tuning and morphology control of binary and ternary rare-earth fluoride materials

机译:稀土离子的大小:二元和三元稀土氟化物的相调和形态控制的关键因素

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摘要

In an ionic liquid assisted solvothermal synthesis developed by us for the synthesis of rare-earth (RE) fluorides, it is possible to control the product formation by the choice of the rare earth ion. For rare-earth cations with smaller ionic radii (below 1.075 angstrom), cubic NaREF4 with a spherical morphology is obtained, whilst for rare-earth cations with radii between 1.08 angstrom and 1.13 angstrom, the formation of hexagonal NaREF4 with a nanorod-like morphology is observed. For rare earth ions with a larger radius than that of La3+ (1.216 angstrom), instead of ternary fluorides, binary fluorides REF3 in the trigonal modification is obtained. The growth mechanism behind this morphology change is explained from atomistic origin using electron microscope studies. The lattice strain changes with the rare-earth fluoride phase. For cubic NaREF4 a tensile strain is observed, whilst for the hexagonal and trigonal binary fluoride a compressive strain is observed. The optical properties of the obtained materials promises use for various optoelectronic applications.
机译:在由我们开发的离子液体辅助溶剂的合成中用于合成稀土(RE)氟化物,可以通过选择稀土离子来控制产物形成。对于具有较小离子半径的稀土阳离子(低于1.075埃),获得具有球形形态的立方Naref4,同时为稀土阳离子与1.08埃和1.13埃造成1.13埃,形成六边形Naref4,与纳米棒状的形态形成观察到。对于具有较大半径的稀土离子而不是LA3 +(1.216埃焦辐射)而不是三元氟化物,获得三元氟化物REF3在三角形修饰中。这种形态变化背后的生长机制是通过使用电子显微镜研究的原子原因来解释。晶格菌株随稀土氟化相的变化。对于立方体NareF4观察到拉伸菌株,而对于六边形和三角二元氟化物,观察到压缩菌株。所得材料的光学性质承诺用于各种光电应用。

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  • 来源
    《RSC Advances》 |2017年第53期|共10页
  • 作者单位

    Dr Hari Singh Gour Vishwavidyalaya Dept Chem Sch Chem Sci &

    Technol Sagar 470003 Madhya Pradesh India;

    Dr Hari Singh Gour Vishwavidyalaya Dept Chem Sch Chem Sci &

    Technol Sagar 470003 Madhya Pradesh India;

    Dr Hari Singh Gour Vishwavidyalaya Dept Chem Sch Chem Sci &

    Technol Sagar 470003 Madhya Pradesh India;

    Iowa State Univ Dept Mat Sci &

    Engn Ames IA 50014 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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