Polycrystalline Gd2(MoO4)3:Dy3+ phosphors have been synthesized by high temperature solid-state reaction method. The phosphors were characterized with X-ray diffractometer, thermogravimetric analysis and different sca...Polycrystalline Gd2(MoO4)3:Dy3+ phosphors have been synthesized by high temperature solid-state reaction method. The phosphors were characterized with X-ray diffractometer, thermogravimetric analysis and different scanning calorimeter, scanning electron microscopy, and photoluminescence spectrofluorimeter. Several peaks at 351, 389, 425, 452, and 472 nm appeared in photoluminescence excitation spectrum, which matched well with the emission of the ultraviolet (UV) and blue-light emitting diode (LED) chips. Upon excitation at 389 nm UV light, intense emissions centered at 484, 575 and 668 nm were attributed to the transitions of 4F9/2→6H15/2, 4F9/2→6H13/2 and 4F9/2→6H11/2 of Dy3+, respectively. The chromaticity coordinates and correlative color temperatures have been calculated and presented in the Commission International de I’Eclairage (CIE) diagrams. The results indicated that Gd1.9(MoO4)3:Dy0.13+ with CIE coordinates of (x=0.38, y=0.41) and the correlative color temperature of 4134 K is a potential candidate for white LEDs.展开更多
Organic substance such as solvent and resin's effect on luminescent capability of SrAl2O4:Eu2+ , Dy3+ phosphor was studied. Some organic solvents and resins were selected for experimentation. The results indicate ...Organic substance such as solvent and resin's effect on luminescent capability of SrAl2O4:Eu2+ , Dy3+ phosphor was studied. Some organic solvents and resins were selected for experimentation. The results indicate that those organic solvents will not have negative effect on the applied capability of SrAl2O4:Eu2+ , Dy3+ phosphor. Adopting the organic resins and covering method, the afterglow luminance of SrAl2O4:Eu2+ , Dy3+ phosphor was increased by 85.01% and 82.51%.展开更多
通过高温固相法制备Li2Sr Si O4:Dy3+,Eu3+荧光粉,采用X-射线粉末衍射(XRD)和阴极射线光谱分别对其物相、阴极射线发光性能进行研究,并研究Dy3+离子掺杂量对其发光性能的影响.结果表明,Dy3+和Eu3+均作为发光中心进入到Li2Sr Si O4的晶...通过高温固相法制备Li2Sr Si O4:Dy3+,Eu3+荧光粉,采用X-射线粉末衍射(XRD)和阴极射线光谱分别对其物相、阴极射线发光性能进行研究,并研究Dy3+离子掺杂量对其发光性能的影响.结果表明,Dy3+和Eu3+均作为发光中心进入到Li2Sr Si O4的晶格中并未改变其晶格结构;在0.5~5 k V的电子束激发下,发射光谱主要由Dy3+和Eu3+的f-f特征跃迁组成;随着Dy3+掺杂量的增加,Dy3+的发射强度先增强后减弱,说明存在浓度猝灭,而Eu3+的发射强度有所提高,说明Dy3+对Eu3+有一定的敏化作用;Dy3+的最佳掺杂量为0.15;随着电压和电流的增加,样品的发光强度逐渐提高.展开更多
基金Project supported by the National Natural Science Foundation of China (50872036)
文摘Polycrystalline Gd2(MoO4)3:Dy3+ phosphors have been synthesized by high temperature solid-state reaction method. The phosphors were characterized with X-ray diffractometer, thermogravimetric analysis and different scanning calorimeter, scanning electron microscopy, and photoluminescence spectrofluorimeter. Several peaks at 351, 389, 425, 452, and 472 nm appeared in photoluminescence excitation spectrum, which matched well with the emission of the ultraviolet (UV) and blue-light emitting diode (LED) chips. Upon excitation at 389 nm UV light, intense emissions centered at 484, 575 and 668 nm were attributed to the transitions of 4F9/2→6H15/2, 4F9/2→6H13/2 and 4F9/2→6H11/2 of Dy3+, respectively. The chromaticity coordinates and correlative color temperatures have been calculated and presented in the Commission International de I’Eclairage (CIE) diagrams. The results indicated that Gd1.9(MoO4)3:Dy0.13+ with CIE coordinates of (x=0.38, y=0.41) and the correlative color temperature of 4134 K is a potential candidate for white LEDs.
文摘Organic substance such as solvent and resin's effect on luminescent capability of SrAl2O4:Eu2+ , Dy3+ phosphor was studied. Some organic solvents and resins were selected for experimentation. The results indicate that those organic solvents will not have negative effect on the applied capability of SrAl2O4:Eu2+ , Dy3+ phosphor. Adopting the organic resins and covering method, the afterglow luminance of SrAl2O4:Eu2+ , Dy3+ phosphor was increased by 85.01% and 82.51%.
文摘通过高温固相法制备Li2Sr Si O4:Dy3+,Eu3+荧光粉,采用X-射线粉末衍射(XRD)和阴极射线光谱分别对其物相、阴极射线发光性能进行研究,并研究Dy3+离子掺杂量对其发光性能的影响.结果表明,Dy3+和Eu3+均作为发光中心进入到Li2Sr Si O4的晶格中并未改变其晶格结构;在0.5~5 k V的电子束激发下,发射光谱主要由Dy3+和Eu3+的f-f特征跃迁组成;随着Dy3+掺杂量的增加,Dy3+的发射强度先增强后减弱,说明存在浓度猝灭,而Eu3+的发射强度有所提高,说明Dy3+对Eu3+有一定的敏化作用;Dy3+的最佳掺杂量为0.15;随着电压和电流的增加,样品的发光强度逐渐提高.