Eu3+-doped ZnMoO4 with different doping concentrations were synthesized by a hydrothermal method. The effects of Eu3+ doping on the phase structure and photoluminescence (PL) properties of ZnMoO4 were investigated...Eu3+-doped ZnMoO4 with different doping concentrations were synthesized by a hydrothermal method. The effects of Eu3+ doping on the phase structure and photoluminescence (PL) properties of ZnMoO4 were investigated. The result showed that the introduction of Eu3~ could lead to phase transition of ZnMoO4. With the increase of Eu3-- doping amount, [3-ZnMoO4 was transformed to ct phase gradually, which led to different photoluminescence performances. The optimized doping concentration of Eu3+ was 6 mol% for the highest emission intensity at 615 nm. Its CIE chromaticity coordinates were (0.667, 0.331), which were very close to the values of standard chromaticity (0.67, 0.33) for National Television Standards Committee (NTSC) system. Therefore, Eu3+-doped ZnMoO4 is considered to be a promising red-emitting phosphor for white LED applications.展开更多
采用溶胶-凝胶法制备了Li Ba PO_(4)∶Eu^(3+)荧光粉,通过热重-差热分析(TG-DTA)、傅里叶变换红外(IR)光谱、X射线衍射(XRD)、透射电子显微镜(TEM)、荧光光谱对荧光粉的结构、发光性质进行表征。TG-DTA结果表明在700℃之后可形成Li Ba P...采用溶胶-凝胶法制备了Li Ba PO_(4)∶Eu^(3+)荧光粉,通过热重-差热分析(TG-DTA)、傅里叶变换红外(IR)光谱、X射线衍射(XRD)、透射电子显微镜(TEM)、荧光光谱对荧光粉的结构、发光性质进行表征。TG-DTA结果表明在700℃之后可形成Li Ba PO_(4)相。IR谱图证实了PO_(4)^(3-)离子的存在。XRD结果表明:温度变化会引起衍射峰不同程度的劈裂;Eu^(3+)掺杂浓度会对样品晶相有影响,掺杂浓度较小时样品出现杂相,随着掺杂浓度增加,样品为纯相六方晶系Li Ba PO_(4)。TEM结果表明随着浓度的增加,材料颗粒会发生一定程度的团聚。荧光结果表明:由于活化剂在不同温度下的晶体结构和配位环境的差异,制备的Li Ba PO_(4)∶Eu^(3+)在不同的退火温度下最佳激发波长不同,其主导的能级跃迁也有所差异,且Eu^(3+)引起的浓度猝灭情况也随之而变。CIE计算结果表明,随着退火温度升高,样品色纯度逐渐变好。Li Ba PO_(4)∶Eu^(3+)可被394 nm长波紫外光有效激发,说明其在白光发光二极管领域有潜在的应用价值。展开更多
文摘Eu3+-doped ZnMoO4 with different doping concentrations were synthesized by a hydrothermal method. The effects of Eu3+ doping on the phase structure and photoluminescence (PL) properties of ZnMoO4 were investigated. The result showed that the introduction of Eu3~ could lead to phase transition of ZnMoO4. With the increase of Eu3-- doping amount, [3-ZnMoO4 was transformed to ct phase gradually, which led to different photoluminescence performances. The optimized doping concentration of Eu3+ was 6 mol% for the highest emission intensity at 615 nm. Its CIE chromaticity coordinates were (0.667, 0.331), which were very close to the values of standard chromaticity (0.67, 0.33) for National Television Standards Committee (NTSC) system. Therefore, Eu3+-doped ZnMoO4 is considered to be a promising red-emitting phosphor for white LED applications.
文摘采用溶胶-凝胶法制备了Li Ba PO_(4)∶Eu^(3+)荧光粉,通过热重-差热分析(TG-DTA)、傅里叶变换红外(IR)光谱、X射线衍射(XRD)、透射电子显微镜(TEM)、荧光光谱对荧光粉的结构、发光性质进行表征。TG-DTA结果表明在700℃之后可形成Li Ba PO_(4)相。IR谱图证实了PO_(4)^(3-)离子的存在。XRD结果表明:温度变化会引起衍射峰不同程度的劈裂;Eu^(3+)掺杂浓度会对样品晶相有影响,掺杂浓度较小时样品出现杂相,随着掺杂浓度增加,样品为纯相六方晶系Li Ba PO_(4)。TEM结果表明随着浓度的增加,材料颗粒会发生一定程度的团聚。荧光结果表明:由于活化剂在不同温度下的晶体结构和配位环境的差异,制备的Li Ba PO_(4)∶Eu^(3+)在不同的退火温度下最佳激发波长不同,其主导的能级跃迁也有所差异,且Eu^(3+)引起的浓度猝灭情况也随之而变。CIE计算结果表明,随着退火温度升高,样品色纯度逐渐变好。Li Ba PO_(4)∶Eu^(3+)可被394 nm长波紫外光有效激发,说明其在白光发光二极管领域有潜在的应用价值。