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Synthesis of high-quality garnet-type Gd_3Sc2Al_3O_(12):Ce~(3+) nanocrystals

机译:合成优质石榴石型GD_3SC2AL_3O_(12):CE〜(3+)纳米晶体

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The synthesis of garnet-type Gd_3Sc2Al_3O_(12) (GSAG) nanoparticles doped with Ce~(3+) ions under solvothermal conditions in 1,4-butanediol is reported in this work. X-ray diffraction with LeBail fitting, Electron microscopy images and photoluminescence spectra were used to characterize the samples. A detailed Transmission Electron Microscopy study shows strong modification of particle morphology upon reaction temperature. Performing the reaction at high temperature and high pressure leads to a clear increase of the particle crystallinity and allows the formation of 100-nm sized nanocrystals with a small size dispersion (± 20 nm). The formation mechanism of these particles is through the self-orientation of primary crystalline grains. Yellow-orange luminescence of Ce~(3+)-doped GSAG nanoparticles is observed upon 457-nm excitation. Photoluminescence intensity drastically increases when the particles are synthesized at high temperature, which is directly correlated to their crystal quality.
机译:在这项工作中,在1,4-丁二醇中掺杂有CE〜(3+)离子的石榴石型GD_3SC2AL_3O_(12)(GSAG)纳米粒子的合成掺杂1,4-丁二醇中的溶剂。使用LEBAIL配件,电子显微镜图像和光致发光光谱的X射线衍射用于表征样品。详细的透射电子显微镜研究显示了反应温度时颗粒形态的强烈修饰。在高温和高压下进行反应导致颗粒结晶度的透明增加,并允许形成100nm大小的纳米晶体,小尺寸分散体(±20nm)。这些颗粒的形成机制是通过初级结晶颗粒的自取向。在457-nm激发时观察到Ce〜(3 +)掺杂GSAG纳米粒子的黄橙色发光。当在高温下合成颗粒时,光致发光强度大大增加,这与其晶体质量直接相关。

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