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Synthesis, characterization and optical properties of Eu2O3 mesoporous thin films

机译:Eu2O3介孔薄膜的合成,表征和光学性质

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For the first time, nanocrystalline Eu2O3 thin films, exhibiting similar to 50% of porous volume, highly accessible mesoporosity, pore diameter of about 10 nm, and thermal stability up to 830 degrees C, were prepared using the evaporation-induced self-assembly ( EISA) process from europium ( III) chloride and specific polyethylene oxide based copolymer structuring agent. Crystallization of the inorganic network was achieved through a controlled thermal treatment sequence that was followed by in situ time-resolved SAXS/WAXS analysis involving synchrotron radiation. Atomic force microscopy ( AFM) and x-ray diffraction ( XRD) were used to complete the characterization of the crystallization of the film. Porous structures were additionally analysed by transmission electron microscopy ( TEM), and environmental ellipsometry porosimetry ( EEP), while the composition of the films was characterized by Rutherford back-scattering ( RBS). Finally, the luminescence properties of these layers were investigated.
机译:首次使用蒸发诱导的自组装方法制备了纳米晶Eu2O3薄膜,该薄膜具有接近50%的多孔体积,高度可访问的介孔率,约10 nm的孔径和高达830摄氏度的热稳定性( EISA)方法由氯化euro(III)和特定的聚环氧乙烷基共聚物结构剂制成。无机网络的结晶是通过控制热处理顺序实现的,然后进行涉及同步加速器辐射的原位时间分辨SAXS / WAXS分析。原子力显微镜(AFM)和X射线衍射(XRD)用于完成薄膜结晶的表征。多孔结构还通过透射电子显微镜(TEM)和环境椭偏孔隙率法(EEP)进行了分析,而膜的组成则通过卢瑟福背散射(RBS)进行了表征。最后,研究了这些层的发光特性。

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