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采用高温固相法结合电荷补偿方式2Sr2+→Eu3++Na+,合成了适合白光LED的红色荧光材料NaxSr1-2xMoO4∶Eux^3+(x=0.1、0.15、0.2,0.25、0.3)系列样品.对样品分别进行了X射线衍射(XRD)分析和荧光光谱的测定.测试结果表明,NaxSr1-2xMoO4∶Eu3x+荧光粉可以被近紫外光(UV)(393 nm)和蓝光(463 nm)有效激发.通过探讨Na+和Eu3+的掺杂浓度对发光强度的影响,得出NaxSr1-2xMoO4∶Eux3+系列样品的发光强度比SrMoO4:Eu3+明显增加,且当掺杂量x=0.2时,NaxSr1-2xMoO4∶Eux3+系列样品在616 nm处的发光强度最大.分析了NaxSr1-2xMoO4∶Eux3+系列样品在380 nm紫外光激发下的色坐标,当Na+和Eu3+的掺杂量x=0.15时,样品的红色显色最强.  相似文献   
2.
Eu3+ and Ho3+ doped Sr2TiO4 were synthesized by using solid-state reactions. Samples sintered at 1300 oC for 6 h could be indexed to Sr2TiO4 with a single phase. Eu3+ in Sr2TiO4 emitted orange light under the excitation at 365 nm in a broad band which was coupled well with the strongest emission of high pressure mercury vapor lamps. Ho3+ in Sr2TiO4 emitted yellow light under blue excitation from 450 to 460 nm which agreed well with the emission of blue InGaN-based light-emitting diodes. The present results indicated that Sr2TiO4 was a promising host for high pressure mercury vapor lamps or white light-emitting diodes.  相似文献   
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采用高温固相法结合电荷补偿方式2Sr2+→Eu3+ +Na+,合成了适合白光LED的红色荧光材料NaxSr1-2x MoO4:Eu3+x(x=0.1、0.15、0.2,0.25、0.3)系列样品.对样品分别进行了X射线衍射(XRD)分析和荧光光谱的测定.测试结果表明,NaxSr1-2xMoO4:Eu3+x荧光粉可以被近紫外光(UV)(393 nm)和蓝光(463 nm)有效激发.通过探讨Na+和Eu3+的掺杂浓度对发光强度的影响,得出NaxSr1-2xMoO4:Eu3+x系列样品的发光强度比SrMoO4:Eu3+明显增加,且当掺杂量x=0.2时,NaxSr1-2xMoo4:Eu3+x系列样品在616 nm处的发光强度最大.分析了NaxSr1-2xMoO4:Eu3+x系列样品在380 nm紫外光激发下的色坐标,当Na+和Eu3+的掺杂量x=0.15时,样品的红色显色最强.  相似文献   
4.
A series of Eu3+-Bi3+ co-doped CaMoO4 red phosphors were synthesized via the solid-sate reaction method. The crystal structures of the obtained samples were identified by X-ray powder diffraction (XRD). The photoluminescence property was investigated, and the results showed that the intensity of excitation spectra and emission spectra could be changed with different doping ratios of Bi3+/Eu3+. The proposed explanation of these changes was from the energy transfer between Bi3+ and Eu3+ and the unbalanced cha...  相似文献   
5.
A series of Eu3+-Bi3+ co-doped CaMoO4 red phosphors were synthesized via the solid-sate reaction method. The crystal structures of the obtained samples were identified by X-ray powder diffraction (XRD). The photoluminescence property was investigated, and the results showed that the intensity of excitation spectra and emission spectra could be changed with different doping ratios of Bi3+/Eu3+. The proposed explanation of these changes was from the energy transfer between Bi3+ and Eu3+ and the unbalanced charge from the substitution of Eu3+ and Bi3+ for Ca2+ in CaMoO4. The obtained samples are a promising red light emitting phosphor for the needs of different excitation sources with near-UV and blue GaN-based chips.  相似文献   
6.
采用高温固相法制备了Ce3+激活的钇铝石榴石荧光粉Y3Al5O12:Ce3+(YAG:Ce3+)。采用X射线衍射法对所制备的样品进行结构分析,采用荧光光谱仪对样品进行发光分析。结果表明,在YAG:Ce3+的高温固相法制备过程中原材料和助熔剂用量以及稀土离子掺杂量、研磨时间、灼烧温度和时间等,都会对所制备样品的成相和发光性能产生影响。  相似文献   
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