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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Morphology-controlled facile surfactant-free synthesis of 3D flower-like BiOI: Eu3+ or Tb3+ microarchitectures and their photoluminescence properties
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Morphology-controlled facile surfactant-free synthesis of 3D flower-like BiOI: Eu3+ or Tb3+ microarchitectures and their photoluminescence properties

机译:形态学控制的体形无表面活性剂合成3D花样BioI:Eu3 +或Tb3 +微体系结构及其光致发光性能

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摘要

Three-dimensional (3D) flower-like bismuth oxyiodide (BiOI) and Eu3+ or Tb3+ ions single-doped BiOI microarchitectures were successfully synthesized by a facile and eco-friendly wet chemical method in an ethylene glycol solvent. The solvent played a significant role in the formation of the 3D flower-like BiOI microarchitectures with respect to temperature and time. The phase formation of the synthesized BiOI samples was examined by X-ray diffraction analysis, which confirmed a characteristic tetragonal crystal structure with the space group of P4/nmm. The growth mechanism was discussed based on the field-emission scanning electron microscope images obtained for the samples at different growth temperatures and growth times. The crystallinity of the BiOI sample was confirmed by field-emission transmission electron microscope images. The photoluminescence (PL) properties were analyzed for the Eu3+ or Tb3+ single-doped BiOI 3D flower-like microarchitectures. The PL emission spectra of BiOI: Eu3+ samples showed intense red emission peak at 616 nm due to the D-5(0) -> F-7(2) electronic transition of Eu3+ ions under 255 nm excitation. Similarly, under 253 nm (f -> d transition) excitation, the PL emission spectra of BiOI: Tb3+ samples exhibited intense green emission peak at 545 nm corresponding to the f -> f transitions of Tb3+ ions. Additionally, the temperature-dependent PL emission spectra were studied for the optimized BiOI: 0.07Eu(3+) and BiOI: 0.02Tb(3+) samples, indicating good thermal stability. The Commission Internationale de l'Eclairage chromaticity coordinates were calculated for the optimized samples, which showed values close to those of commercial red-and green-emitting phosphors.
机译:三维(3D)花样的氧铋(BioI)和Eu3 +或Tb3 +离子单掺杂的生物体微体系结构通过乙二醇溶剂中的容易和环保的湿化学方法成功地合成。溶剂在相对于温度和时间的时间内形成3D花样的生物体微体系结构的显着作用。通过X射线衍射分析检查合成的生物样品的相形成,其证实了具有P4 / NMM的空间组的特征四方晶体结构。基于在不同生长温度和生长时间的样品获得的现场排放扫描电子显微镜图像讨论了生长机制。通过现场 - 发射透射电子显微镜图像确认生物样品的结晶度。分析光致发光(PL)性质的EU3 +或TB3 +单掺杂的BIOI 3D花样微型结构。 BIOI的PL发射光谱:Eu3 +样品由于255nm激发下的EU3 +离子的Eu3 +离子的电子转变,在616nm处显示出强烈的红色发射峰。类似地,在253nm(F - > D转变)激发下,Bioi:Tb3 +样品的PL发射光谱在545nm处表现出与Tb3 +离子的F - > F转变的强烈的绿色发射峰。另外,研究了温度依赖性的PL发射光谱,用于优化的BIOI:0.07EU(3+)和生物:0.02Tb(3+)样品,表明良好的热稳定性。委员会Internationale de L'Eclairage Choromity坐标针对优化的样品计算了优化的样品,其显示靠近商业红细和绿色发光磷光体的值。

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