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首页> 外文期刊>Journal of Materials Science >Compositional-dependent properties of Pr3+-doped multicomponent fluoro-phosphate glasses for visible applications: a photoluminescence study
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Compositional-dependent properties of Pr3+-doped multicomponent fluoro-phosphate glasses for visible applications: a photoluminescence study

机译:Pr3 +掺杂的多组分氟代磷酸盐玻璃在可见光应用中的成分依赖性:光致发光研究

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摘要

Five fluoro-phosphate (FP) glasses of different compositions, 49.5P(2)O(5)-10AlF(3)-10BaF(2)-10SrF(2)-10PbO-10M (M = Li2O, Na2O, K2O, ZnO, and Bi2O3), doped with 0.5 mol% praseodymium were prepared by melt quenching technique. For these glass matrices, structural, thermal, dielectric, electrical, and optical properties have been studied. The structures are characterized by XRD, Fourier transform infrared, Raman spectroscopy, and solid-state P-31 and Al-27 magic angle spinning nuclear magnetic resonance techniques. The chemical and electronic states of these glass materials are characterized by X-ray photoelectron spectroscopy. The thermal stability for the host glass matrix is estimated from differential scanning calorimetry technique. From the impedance spectroscopy, various parameters, viz. electrical conductivity, dielectric constant (epsilon'), and dielectric losses (tan delta), at various frequencies and temperatures have been measured. X-ray absorption near-edge spectroscopy was used to study the electronic structure of praseodymium in the host glass matrices. By analyzing the absorption spectra with Judd-Ofelt theory, three intensity parameters (Omega(lambda), lambda = 2, 4, 6) are obtained. In turn, these parameters are used to calculate radiative properties such as emission probabilities (A(R)), radiative lifetimes (tau(R)), and integrated absorption cross sections (Sigma) of different Pr3+ transitions. Luminescence parameters such as stimulated emission cross sections (sigma(p)) and branching ratios (beta(exp)) have been studied through photoluminescence spectra. Further, decay time constants are estimated from the decay profiles of Pr3+-doped different FP glasses.
机译:五种不同成分的氟磷酸盐(FP)玻璃,49.5P(2)O(5)-10AlF(3)-10BaF(2)-10SrF(2)-10PbO-10M(M = Li2O,Na2O,K2O,ZnO通过熔融淬火技术制备了掺杂有0.5 mol%ase的Bi2O3。对于这些玻璃基质,已经研究了其结构,热,介电,电和光学性能。该结构的特征在于X射线衍射,傅立叶变换红外光谱,拉曼光谱以及固态P-31和Al-27幻角旋转核磁共振技术。这些玻璃材料的化学和电子状态通过X射线光电子能谱表征。根据差示扫描量热技术估算主体玻璃基质的热稳定性。从阻抗光谱学,各种参数,即。已经测量了在各种频率和温度下的电导率,介电常数(ε)和介电损耗(tanδ)。使用X射线吸收近边缘光谱法研究了主体玻璃基质中of的电子结构。通过使用Judd-Ofelt理论分析吸收光谱,可以获得三个强度参数(Omegaλ,λ= 2、4、6)。这些参数依次用于计算辐射特性,例如发射概率(A(R)),辐射寿命(tau(R))和不同Pr3 +跃迁的积分吸收截面(Sigma)。发光参数,如受激发射截面(sigma(p))和分支比(beta(exp))已通过光致发光光谱进行了研究。此外,从掺杂Pr 3+的不同FP玻璃的衰减曲线估计衰减时间常数。

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