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Effect of hydrothermal temperature treatment on the variance of fluorescence in Ca 2SiO 4:Tb 3+

机译:水热温度处理对CA 2 SIO 4 :TB < CE:sup =“post”> 3 +

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Investigations of structural defects and their associated impact on the optical properties of optical materials are essential expediencies because different methods are involved in the preparation of those materials for display applications. Lanthanide ion doping is a simple structural probing strategy that facilitates the challenges of identifying the structural defects. Pure and terbium (Tb3+) doped Ca2SiO4(C2S) particles were prepared using Pechini (C2SP) and hydrothermal methods (C2SH). From SEM images, it is observed that the Tb3+doped C2SP particles were highly agglomerated, more than the C2SH particles. The TEM study confirmed that the particle size decreased for C2SH prepared at the high hydrothermal temperatures of 180 and 200?°C (C2S:180H and C2S:200H). Fluorescence emission quenching occurred for Tb3+doped C2S:180H and C2S:200H. The emission intensity was high for Tb3+doped C2SH prepared at 140?°C compared to Tb3+doped C2SP, C2S:180H and C2S:200H. The changes in the O2p orbitals, associated with the upper-level valence band spectra of the tetrahedral silicate of pure C2SP and C2S:180H, were experimentally evaluated in the X-ray photoelectron spectroscopy (XPS)-valence band spectra. The symmetry lowering owing to the distortion in the silicate unit quenched the emission, which was confirmed by XPS-valence band spectra and Tb3+emission lines. This study suggests that the Pechini method is more suitable to prepare the Tb3+doped C2S phosphors compared to the hydrothermal method, particularly at high temperature for solid state display and scintillator applications.
机译:对结构缺陷的研究及其对光学材料光学性质的相关影响是必需的基础,因为不同的方法参与制备这些材料的显示应用。镧系元素掺杂是一种简单的结构探测策略,促进了识别结构缺陷的挑战。使用Pechini(C2SP)和水热方法(C2SH)制备纯净和铽(TB3 +)掺杂Ca2SiO 4(C2S)颗粒。从SEM图像中,观察到TB3 +掺杂的C2SP颗粒高度凝聚,比C2SH颗粒更多。 TEM研究证实,在高水温温度为180和200Ω·℃(C2S:180H和C2S:200h)的高水温温度下制备的C2SH的粒度降低。 Tb3 +掺杂C2s的荧光发射猝灭:180h和C2s:200h。与TB3 +掺杂C2SP,C2S:180H和C2S:200h相比,在140℃下制备的Tb3 +掺杂C2sh的发射强度高。与纯C2SP和C2S:180H的四面体硅酸盐的上层硅酸盐的上级价带光谱相关的O2P轨道的变化在X射线光电子能谱(XPS) - 衰减带光谱中进行了实验评估。由于硅酸盐单元中的变形而降低的对称性淬火发射,该发射由XPS级带谱和TB3 +排放线确认。该研究表明,与水热法相比,Pechini方法更适合于制备Tb3 +掺杂的C2s磷光体,特别是在高温下进行固态显示和闪烁体应用。

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