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1.
采用传统的固相合成法制备了Eu3+掺杂的Bi4Si3O12发光材料.使用X射线粉末衍射技术对制备的发光粉体进行了表征.Eu3+掺杂的Bi4Si3O12材料的激发谱表明,在265 nm处强而宽的谱带对应于Eu3+→O2-之间的电荷转移跃迁带.在用紫外光激发的荧光光谱中,Eu3+掺杂的Bi4Si3O12材料在614 nm处有强的红光发射.材料的激发和发射光谱结果表明,Eu3+掺杂的Bi4Si3O12有望做为红色固体发光的候选材料.  相似文献   

2.
通过固相反应法在1000℃空气气氛中合成了In2(MoO4)3:Eu3+、Bi 3+红色荧光粉。粉体分别用X射线衍射(XRD)、荧光分度计测试。结果表明制备的荧光粉具有单相立方晶体结构,该荧光粉能够被近紫外光(395nm)有效激发,发射高强度的612nm红光。Eu3+浓度为40%(摩尔分数)时,In2(MoO4)3:Eu3+发光强度较高。In2(MoO4)3:0.4Eu3+、Bi 3+荧光粉,Bi 3+浓度为3%(摩尔分数)时,发光强度最大,高于没有掺Bi 3+的In2(MoO4)3:0.4Eu3+荧光粉。和CaMoO4:Eu3+相比,In2(MoO4)3:0.4Eu3+、0.03Bi 3+有较高的发光强度。因此,In2(MoO4)3:0.4Eu3+、0.03Bi 3+是一种可能应用于近紫外白光LED的新型红色荧光粉。  相似文献   

3.
采用凝胶-燃烧法制备了Li2BaSiO4∶Eu3+红色荧光粉。用X射线衍射分析(XRD)表征了Li2BaSiO4∶Eu3+荧光粉的结构,重点考察了激活剂Eu3+的浓度对Li2BaSiO4∶Eu3+发光强度的影响。结果表明,Li2BaSiO4∶Eu3+荧光粉为六方晶系结构。以394nm的近紫外光激发样品,Li2Ba1-xSiO4∶xEu3+荧光粉发红光,其中以614.4nm发射峰发光最强。在800℃灼烧3h条件下,当Eu3+的浓度为5.5%时,Li2BaSiO4∶Eu3+荧光粉的发光性能最佳。Eu3+的掺杂对Li2BaSiO4∶Eu3+荧光粉的发射光谱的峰形和峰位无明显影响。  相似文献   

4.
通过离子交换和水热两步合成过程简单制备了Yb3+、Er3+和Eu3+共掺杂锐钛矿型TiO2纳米带。该3种离子共掺杂未导致TiO2结构和形貌发生变化。光学特性测试结果表明,由于稀土离子掺杂浓度低,Eu3+掺杂未改变由Yb3+和Er3+产生的上转换发射峰位,但可观察到因上转换发光激发的Eu3+荧光发射峰;Eu3+荧光光谱也未受到Yb3+和Er3+掺杂的影响。通过对掺杂样品上转换发光机理的考察证实,上转换发光过程是双光子过程,但TiO2和Eu3+掺杂对此发光过程有明显影响。  相似文献   

5.
孟献丰  高俊  何禾  王云龙 《功能材料》2012,43(20):2782-2784,2789
以Eu2O3、Sr(NO3)2和(NH4)6Mo7O24.4H2O为原料,采用水热法合成了Eu3+离子掺杂的Sr0.6MoO4∶Eu0.43+红色荧光粉。用X射线衍射(XRD)、场发射扫描电镜(FE-SEM)和荧光光谱(PL)等分析手段研究了荧光粉的结构和光致发光性能。结果表明,制备的荧光粉颗粒分散均匀,形状呈类四方双锥状,粒径在0.5~2μm之间,荧光粉可以被近紫外光(396nm)和蓝光(466nm)有效激发,发射出峰值位于614nm的红光,激发波长与紫外和蓝光LED芯片相匹配。因此,这种荧光粉是一种可能应用在白光LED上的红色荧光粉材料。  相似文献   

6.
Eu2+在KNaCa2(PO42中的发光及晶体学格位   总被引:2,自引:0,他引:2  
采用高温固相法制备了KNaCa2(PO4)2:Eu2+蓝色荧光粉,并研究了材料的发光特性.在400 nm近紫外光激发下,材料呈非对称的单峰发射,主峰位于470 nm.监测470 nm发射峰,对应的激发光谱覆盖200~450 nm,主峰位于400 nm,说明材料能够很好的吸收紫外?近紫外光,发射蓝色光.利用van Uitert公式计算了Eu2+取代KNaCa2(PO4)2中Ca2+时所占晶体学格位,得出461和502 nm发射分别归属于八配位和六配位的Eu2+发射.研究了Eu2+掺杂浓度对KNaCa2(PO4)2:Eu2+材料发射强度的影响,结果显示Eu2+的最佳掺杂浓度为1mol%,利用Dexter理论得出其浓度猝灭机理为电偶极?电偶极相互作用.  相似文献   

7.
采用氨水、双氧水和磷酸氢二铵溶液作沉淀剂,通过共沉淀法制备出Y(P,V)O4Eu3+荧光粉,利用XRD,SEM以及真空紫外激发下的发射光谱对其进行研究.结果表明与高温固相合成法相比,共沉淀法制备的YP0 5Vo 5O4Eu3+荧光粉的颗粒形貌好,在147nm的真空紫外光激发下的发光亮度提高了21%,荧光粉发射主峰位于619nm,与目前的商品红色荧光粉(Y,Gd)BO3Eu3+相比,发光亮度达95%以上,并且色纯度好,是一种很有前途的彩色PDP用红色荧光粉.  相似文献   

8.
采用高温熔融法制备了Sm3+/Ce3+/Tb3+共掺杂的CaO-B2O3-SiO2发光玻璃材料,并用荧光分光光度计和CIE色度坐标对其发光性能进行了研究。发射光谱表明,在374nm激发下,Sm3+/Ce3+/Tb3+共掺杂CaO-B2O3-SiO2发光玻璃的发射光谱中同时观测到了红橙光、蓝光和绿光的发射带,这些发射带的混合实现了白光发射。此外,在Sm2O3和Tb4O7含量不变的情况下,随着CeO2含量的减小,Sm3+/Ce3+/Tb3+共掺杂发光玻璃的发光颜色在白光区逐渐由蓝光区附近过渡到黄光区附近。  相似文献   

9.
采用高温固相反应法制备了一系列白光LED用CaSi2O2N2:0.05Eu2+,xDy3+,xLi+(0≤x≤0.03)荧光粉.利用X射线衍射仪对样品的物相结构进行了分析,结果表明:Dy3+和Li+离子的掺入没有改变CaSi2O2N2:Eu2+荧光粉的主晶相.利用荧光光谱仪对样品的发光性能进行了测试,发现所有样品的激发光谱均覆盖了从近紫外到蓝光的较宽范围,400 nm激发下得到的发射光谱为宽波段的单峰,峰值位于545 nm左右,是Eu2+离子5d-4f电子跃迁引起的.Dy3+离子掺杂可以提高CaSi2O2N2:Eu2+荧光粉的发光强度,Dy3+与Li+共掺杂可进一步提高荧光粉的发光强度,当Dy3+和Li+的掺杂量为1mol%时,荧光粉的发光强度达到最大值,是单掺杂Eu2+的荧光粉发光强度的157%.  相似文献   

10.
用二次熔融法制备了SrAl2O4∶Eu2+,Dy3+荧光粉掺杂低熔点硫磷酸盐的发光玻璃复合材料。采用DSC、透射光谱、XRD、发射光谱、SEM等测试手段对样品进行了表征。研究了熔制温度、熔制时间等因素对复合材料光学性能的影响。结果表明:熔制温度为700℃、熔制时间为30min的发光玻璃复合材料在365nm紫外光激发下,发射出峰值波长为514nm的黄绿光,保留了荧光粉的发光性能。  相似文献   

11.
Gadolinium or lanthanum co-doped (0.5 mole) yttrium aluminum garnet doped with cerium phosphors were synthesized by a citric acid gel method and the effect of co-dopants on the structural and luminescent properties were studied. A significant peak shift in the photoluminescence spectra of yttrium aluminum garnet doped cerium was observed from 535 to 556 and 576 nm for gadolinium or lanthanum co-doped phosphors, respectively. The color tuned phosphor were blended with yttrium aluminum garnet doped cerium which showed a considerable improvement in the Commission International De Eclairage chromaticity co-ordinate values of gallium nitride based blue light emitting diode pumped white light. White light emitted from yttrium aluminum garnet doped cerium shows a Commission International De Eclairage value of (0.229, 0.182) whereas the yttrium aluminum garnet doped cerium phosphor blended with gadolinium or lanthanum co-doped phosphor shows (0.262, 0.243) and (0.295, 0.282), respectively. These results demonstrate the possibility to use these phosphor blends to enhance the white light generation in the field of white-light emitting diode solid-state lighting.  相似文献   

12.
Y2O3:Eu, Bi red phosphors were first prepared by molten salt synthesis (MSS) method at a low temperature. X-ray diffraction (XRD), scanning electron microscopy (SEM), and fluorescence spectrophotometer were used to characterize the as-synthesized phosphors. The results show that as-obtained Y2O3:Eu, Bi phosphors have good cubic crystallinity, presenting octahedral morphology with smooth surface and relatively uniform particle size. Bi3+ ion as a sensitizer plays a significant effect on the emission intensity of Y2O3:Eu, Bi by energy transfer from Bi3+ to Eu3+ and the optimal concentration of Bi3+ is 1.5 mol%. Y2O3:Eu, Bi emits excellent red light as the excitation wavelength is between 330 and 420 nm or excited by 254, 466 nm. Meanwhile, its emission intensity is as strong as that of sample prepared by solid-state reaction. So the as-fabricated red phosphors by MSS method would have a promising application in the area of white light-emitting diodes.  相似文献   

13.
采用高温固相法制备了红色荧光粉MMoO4:Eu3+(M=Ca,Sr,Ba),用XRD和荧光分光光度计对其物相及发光性能进行表征和研究。结果表明,在800℃时可得到MMoO4(M=Ca,Sr,Ba)物相结构。分别以395nm的近紫外光和465nm的可见光激发样品,MMoO4:Eu3+(M=Ca,Sr,Ba)荧光粉发红光,对应于Eu3+的4f-4f跃迁,其中以616nm发光最强。荧光粉在395nm和465nm的吸收分别与紫外光和蓝光LED芯片相匹配。  相似文献   

14.
采用化学反应与高温固相反应相结合的方法制备了Ce3和Eu3+共掺杂Y2O3荧光粉,利用X射线衍射和扫描电镜分析,发现Ce3+离子共掺杂对Y2O3:Eu3+荧光粉的颗粒形貌有显著的影响,随着Ce3+离子浓度的改变,形貌可从球型转变为管状.荧光光谱分析表明,所制备的共掺杂荧光粉主要发射位于614纳米的红光峰和位于587纳米...  相似文献   

15.
Well dispersed and homogeneous Y2O2S:Sm3+ hollow submicrospheres were successfully achieved by a templatefree solvothermal method combining with a postcalcining process.The crystalstructure and particle morphology were investigated by the X-ray diffraction(XRD),Fourier transform infrared(FT-IR) spectra,scanning and transmission electron microscopy(SEM and TEM),respectively.A possible growth mechanism was proposed to reveal the formation process.Luminescence properties of the Y2O2S:Sm3+ long-lasting phosphor were analyzed by measuring the excitation spectra,emission spectra,afterglow decay curve and thermoluminescence curve.The excitation spectra indicated that the phosphor could be excited effectively by the ultraviolet-light emitting diode(UV-LED) or blue LED,and the emission spectra showed that the phosphor could emit red light from 600 to 650 nm.  相似文献   

16.
利用共沉淀法制备了Yb和Mn离子共掺的LaMgAl11O19荧光粉。研究其室温下的发光性能。紫外光激发时观察到发光中心位于504nm的单一宽带发光峰,归因于Yb^2+的激发态4f135d能级与基态4f14能级间的电子跃迁。同时观察到Yb和Mn共掺的LaMgAl11O19中存在Yb^2+对Mn^2+的传能现象,传能过程可...  相似文献   

17.
A series of single-phased CaAl2Si2O8: Eu, Tb phosphors have been synthesized at 1400 °C via a solid state reaction. The emission bands of Eu2+ and Eu3+ were observed in the air-sintered CaAl2Si2O8: Eu phosphor due to the self-reduction effect. Tb3+ ions that typically generated green emission were added in CaAl2Si2O8: Eu phosphor for contributing for a wider-range tunable emission. Energy transfer from Eu2+ to Tb3+ and the modulation of valence distribution of Eu2+/Eu3+ that contributes to the tunable color emitting were elucidated. More importantly, a white emission can be obtained by controlling the codoped contents of Li+ as well as suppressing the self-reduction degree of Eu. The white light emitting with the color coordinate (0.326, 0.261) was obtained, which indicates that CaAl2Si2O8: Eu, Tb is a promising tunable color phosphor for application in ultraviolet light emitting diodes (UV-LEDs).  相似文献   

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