发光
荧光粉
原硅酸盐
价(化学)
材料科学
粘结长度
德拜模型
结晶学
热稳定性
晶体结构
热容
化学键
X射线晶体学
分析化学(期刊)
衍射
化学
热力学
纳米技术
光学
光电子学
物理
有机化学
正硅酸乙酯
色谱法
作者
Kristin A. Denault,Jakoah Brgoch,Michael W. Gaultois,Alexander Mikhailovsky,Ralf Petry,Holger Winkler,Steven P. DenBaars,Ram Seshadri
摘要
The orthosilicate phosphors SrxBa2–xSiO4:Eu2+ have now been known for over four decades and have found extensive recent use in solid-state white lighting. It is well-recognized in the literature and in practice that intermediate compositions in the solid-solutions between the orthosilicates Sr2SiO4 and Ba2SiO4 yield the best phosphor hosts when the thermal stability of luminescence is considered. We employ a combination of synchrotron X-ray diffraction, total scattering measurements, density functional theory calculations, and low-temperature heat capacity measurements, in conjunction with detailed temperature- and time-resolved studies of luminescence properties to understand the origins of the improved luminescence properties. We observe that in the intermediate compositions, the two cation sites in the crystal structure are optimally bonded as determined from bond valence sum calculations. Optimal bonding results in a more rigid lattice, as established by the intermediate compositions possessing the highest Debye temperature, which are determined experimentally from low-temperature heat capacity measurements. Greater rigidity in turn results in the highest luminescence efficiency for intermediate compositions at elevated temperatures.
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