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1.
采用静电纺丝技术制备了PVP/[Y(NO3)3+Eu(NO3)3]复合纳米纤维,研究了反应体系的最佳组成,系统地讨论了静电纺丝工艺的影响,获得了最佳制备条件.将PVP/[Y(NO3)3+Eu(NO3)3]复合纳米纤维在900℃焙烧10h,获得了晶态的Y2O3∶Eu3+ 纳米纤维.XRD分析表明,PVP/[Y(NO3)3+Eu(NO3)3]复合纤维为无定型,Y2O3∶Eu3+ 发光纳米纤维属于体心立方晶系,空间群为Ia3.SEM分析表明,PVP/[Y(NO3)3+Eu(NO3)3]复合纳米纤维表面光滑,平均直径约为150nm;Y2O3∶Eu3+ 发光纳米纤维的直径约为50nm.  相似文献   

2.
采用微波法合成Y2O3:Eu3+红色荧光粉,研究了碳酸盐、氟化物、硼酸等助熔剂对其合成过程及发光性能的影响.分别采用光谱分析仪和激光粒度仪对所合成荧光粉的光电性能和粒径进行分析.结果表明,不同助熔剂的加入对样品发射主峰的位置(610 nm)没有产生影响,但可明显影响样品的发光性能和粒径.采用碳酸盐单一助熔剂时,样品的相对亮度比采用氟化物时的高;采用复合助熔剂所制备样品在相对亮度及粒径方面,整体上较采用单一助熔剂样品的更优.  相似文献   

3.
采用超声波作用下的均匀沉淀法制备Ca2 、La3 掺杂的纳米Y2O3∶Eu3 荧光粉.通过正交实验研究掺杂浓度、溶液pH、超声功率、反应时间、干燥温度、煅烧温度等因素对其光致发光(PL)性能的影响,得到制备Ca2 、La3 掺杂纳米Y2O3∶Eu3 的最佳条件.结果表明,超声功率、Eu(NO3)3浓度、尿素体积、氨水浓度、煅烧温度是影响样品PL强度的主要因素.Ca2 、La3 离子单一掺杂效果优于两种元素的复合掺杂,最佳条件下制备的Ca2 、La3 分别掺杂的纳米Y2O3∶Eu3 荧光粉的发光性能均显著优于未掺杂样品.  相似文献   

4.
采用溶胶-凝胶法合成Ca3Al2O6:Eu3+红色荧光粉,通过XRD、SEM、荧光光谱分别对样品的结构、形貌以及发光性能进行表征,讨论煅烧温度、Eu3+掺杂浓度以及电荷补偿剂对样品发光性能的影响.结果表明:实验所得样品的结构与Ca3Al2O6相同,Eu3+掺杂并没有改变其晶体结构.合成的荧光粉在394 nm近紫外光激发下发出615 nm明亮的红光.样品的红光强度随着煅烧温度的升高先增加后减弱,最佳烧结温度为1200℃.同样红光强度也随着Eu3+掺杂浓度的增加先增加后减弱,最佳Eu3+掺杂浓度为4%(摩尔分数).加入电荷补偿剂后样品的发光强度均增强,其中加入K+后发光增强的效果最显著.该铝酸盐红色荧光粉性质稳定,在白光LED近紫外芯片激发中具有潜在的应用.  相似文献   

5.
利用水热法制备立方相Y2O3:Eu红色荧光粉.在不同掺杂浓度、不同溶液pH值的系列样品中,均观测到Eu3+离子的特征发射.荧光强度与Eu3+离子掺杂浓度关系研究表明:在不同掺杂浓度中,Eu3+离子掺杂浓度为9%时其相对发射强度最强.在不同溶液pH值所获得的样品中,以溶液pH等于6制备的样品发光效果最好.此外通过与商用Y2O3:Eu红色荧光粉比较,发现其荧光强度相当.因此,与传统高温固相法相比,水热法合成Y2O3:Eu红色荧光粉是简单易行方案.  相似文献   

6.
Gd3+,Eu3+在介孔Y2O3中的能量传递   总被引:2,自引:0,他引:2  
通过模板法与溶胶-凝胶法相结合,在温和的条件下制备了介孔Y2O3.再采用水热反应法制得Eu3+、Gd3+单掺杂及Eu3+,Gd3+双掺杂的三种介孔Y2O3组装体(介孔Y2O3∶Eu3+,介孔Y2O3∶Gd3+,介孔Y2O3∶Eu3+,Gd3+).利用广角和小角X射线衍射(XRD)、透射电子显微镜(TEM)对介孔Y2O3进行了表征,结果表明,所制备的介孔Y2O3为立方相,具有六方孔道结构,孔径约10nm.对介孔Y2O3和组装体系进行了荧光光谱(PL)分析,发现在550℃热扩散处理后,介孔Y2O3∶Eu3+的发光存在基质对Eu3+的能量传递,Y2O3∶Eu3+,Gd3+体系中Gd3+对Eu3+也有能量传递作用.  相似文献   

7.
用微波辅助均相沉淀法制备了一系列(Y1-x-y, Lay2O3:xEu3+(x=0.01~0.05, y=0.05~0.25) 红色荧光粉.研究Eu3+、La3+的掺杂浓度和煅烧温度对荧光粉性能的影响.通过差热分析仪、红外光谱仪、XRD、SEM和荧光分光光度计,对前驱体热重曲线和FTIR曲线、样品的晶体结构、表面形貌及颗粒大小和荧光性能进行表征.结果表明:前驱体组成为 (Y, La, Eu) OHCO3·nH2O;所制备样品为立方晶系;SEM显示荧光粉为均匀分散的球形颗粒,粒度为200 nm左右;较为适宜的焙烧温度为900 ℃;La3+掺杂含量y=10 %, Eu3+掺杂含量x=3 %时,样品荧光粉发光性能最好,最大发射波长为614 nm,对应的是Eu3+的5D0→7F2跃迁;样品的色坐标为 (0.654, 0.346).所制备的(Y1-x-y, Lay2O3:xEu3+荧光粉具备较好的发光强度与色纯度.   相似文献   

8.
《稀土》2015,(5)
利用高温固相法合成系列Na Ln4(Si O4)3F∶Eu3+(Ln=La,Gd,Y)红色荧光粉,用X射线粉末衍射仪和荧光分光光度计对荧光粉进行结构和性能表征,研究Eu3+浓度以及基质组成的变化对Na Ln4(Si O4)3F∶Eu3+(Ln=La,Gd,Y)发光性能的影响。在394 nm激发下,荧光粉Na La4-x(Si O4)3F∶x Eu3+中的Eu3+主要体现5D0→7F2(616 nm)和5D0→7F1(590 nm)跃迁发射,而且5D0→7F2和5D0→7F1跃迁发射强度比例随Eu3+浓度的增大而变化,较低浓度时5D0→7F1发射比5D0→7F2强,较高浓度时则刚好相反。在273 nm激发下,荧光粉Na La3.9-yGdy(Si O4)3F∶0.1Eu3+或Na La3.9-zYz(Si O4)3F∶0.1Eu3+中Eu3+的5D0→7F2(616 nm)发射随掺杂离子浓度增加而增强,而5D0→7F1发射强度变化不大。因此可以通过改变Eu3+浓度以及基质组成离子Gd3+或Y3+浓度对5D0→7F2和5D0→7F1发射强度加以调整,进而调整荧光粉的红光色度。  相似文献   

9.
利用水热法制备了性能稳定的红色荧光粉LaPO4:Eu3+,同时研究了不同的Eu3+浓度、煅烧温度对荧光粉发光性能的影响.通过X射线粉末衍射(XRD)和扫描电子显微镜(SEM)来表征荧光粉的晶体结构和颗粒大小及形貌;用激发光谱和发射光谱以及荧光衰减曲线来表征荧光粉的荧光性能.结果表明:未煅烧时前躯体主要是六方晶相LaPO4·0.5H2O,煅烧温度在900℃时,所制备样品为单斜相LaPO4:Eu3+;SEM图像显示5 at.%Eu3+掺杂LaPO4呈椭球形,颗粒长约为500 nm,宽约为300 nm.最大发射波长和激发波长分别为592 nm和393 nm,发射光谱中592 nm和612 nm的发射峰对应的是Eu3+离子的5D0→7F1和5D0→7F2跃迁.其荧光寿命为3.32 ms.  相似文献   

10.
使用高温固相法制备不同NH4Cl(作为助熔剂)加入量和不同Eu2+浓度的Sr3MgSi2O8:Eu2+,并研究其成相和发光性质.研究结果表明:NH4Cl加入量为24%时,样品为纯相,发光最强.Sr3MgSi2O8:Eu2+样品在近紫外区存在强激发带(250~400 nm),谱峰位于366 nm相应的发射谱带位于蓝光区(420~500nm),为一个不对称宽带,谱峰位于457 nm,该发射带由两个发射峰组成,其位置较接近,因此不能复合出白光,Sr3MgSi2O8:Eu2+仅适合作为紫外LED芯片激发的蓝光荧光粉.  相似文献   

11.
Eu3+-doped (Y,Gd)NbO4 phosphor was synthesized by solid-state reaction for possible application in cold cathode fluorescent lamps. A broad absorption band with peak maximum at 272 nm was observed which was due to the charge transfer between Eu3+ ions and neighboring oxygen anions. A deep red emission at the peak wavelength of 612 nm was observed which could be attributed to the 5D0→7F2 transition in Eu3+ ions. The highest luminance for Y1-x-yGdyNbO4:Eux3+ under 254 nm excitation was achieved at Eu3+ concentration of 18 mol.% (x=0.18) and Gd3+ concentration of 8.2 mol.% (y=0.082). The luminance of Y0.738Gd0.082NbO4:Eu3+0.18 was higher than that of a typical commercial phosphor Y2O3:Eu3+ and the CIE chromaticity coordinate was (0.6490, 0.3506), which was deeper than that of Y2O3:Eu3+. The particle size of the synthesized phosphors was controlled by the NaCl flux and particle size as high as 8 μm with uniform size distribution of particles was obtained.  相似文献   

12.
The Y-Eu oxalate precursor was prepared with a homogeneous precipitation method. And the additives, Na2CO3, S, NaCl or their combination, were introduced into the precursor to prepare Y2O3 :Eu^3+ red phosphors at 1000 1300 ℃ for 2 h. The effect of molten salts on particle size and luminescent intensity was studied. The experimental results showed that the complex molten salt (Na:CO3 + S + NaCl) was conductive to enhance the luminescent intensity of Y2O3 :Eu^3+. The emission intensity of the phosphor prepared with these additives at 1300 ℃ was about 45% higher than that of the one prepared without molten salt, and about 11% higher than that of the corresponding commercial phosphor. Meanwhile, the particle size of Y2O3 :Eu^3+ phosphor was controlled effectively with the molten salt.  相似文献   

13.
The Ba3Y2(BO3)4:Eu^3+ phosphor was synthesized using a high temperature solid-state reaction method and the luminescent characteristics were investigated. The emission spectrum exhibited one strong red emission at 613 nm, corresponding to the electric dipole 5D0-TF2 transition of Eu^3+, under 365 nm excitation. The excitation spectrum of 613 nm indicated that the Ba3Y2(BO3)n:Eu^3+ phosphor was effectively excited by ultraviolet (UV) (254, 365 and 400 nm) and blue (470 nm) light. The effect of Eu^3+ concentration on the 613 nm emission of the Ba3Y2(BO3)n:Eu^3+ phosphor was measured. The results showed that the emission intensity increased with increasing Eu^3+ concentration, and then decreased. The CIE color coordinates of Ba3Y2(BO3)4:Eu^3+ phosphor were x=0.641 and y=0.359 at 15 mol.% Eu^3+.  相似文献   

14.
Mixed strontium-yttrium borate phosphor Sr3Y2(BO3) 4 doped with Eu3+ ions was obtained by the sol-gel Pechini method.Crystal structure of the synthesized compound was analyzed by X-ray powder diffraction.Optimal conditions for the synthesis were found.Photo-physical properties of the phosphor samples were investigated by collecting excitation and luminescence spectra as well as measuring lumi-nescence lifetime.Judd-Ofelt analysis showed that Eu3+ ions occupied Y3+ sites in the crystalline network.The studied compound showed a red emission with the quantum yield of 54%-55% and can be potentially used as phosphor for plasma display panels and luminescent tubes.  相似文献   

15.
A series of red phosphors M3BO6:Eu3+(M=La,Y) were synthesized at 1150 oC by conventional solid state reaction method and their luminescent properties were investigated.Structural characterization of the luminescent materials was carried out with X-ray powder diffraction(XRD) analysis.Photoluminescence measurements indicated that the La3BO6:Eu3+ phosphor exhibited bright red emission centered at about 612 nm 626 nm under UV excited.La3BO6:Eu3+ phosphor had better luminescent intensity than Y3BO6:Eu3+ phosphors under the same excitation and measuring conditions.It was shown that the 0.08 mol.% Eu3+ ions in La3BO6:Eu3+ phosphors was optimal.The color parameter indicated that La3BO6:Eu3+ phosphor was a preferable red phosphor for white LED.  相似文献   

16.
Luminescent material Ba3Gd(BO3)3 doped with Eu3+ ion was prepared by high temperature solid-state method. The preparing conditions, luminescent properties, and particle morphology of Ba3Gd(BO3)3:Eu3 + phosphor were studied with X-ray diffraction (XRD), fluorescence spectroscopy, and scanning electron microscopy (SEM). The results obtained by XRD showed that pure phase of Ba3Gd(BO3)3 was obtained at 1000℃. Images from SEM displayed that the particles of Ba3Gd(BO3)3:Eu3+ phosphor had a spherical shape with an average diameter of about 200-400 nm. The luminescence spectra showed that Ba3Gd(BO3)3:Eu3+ phosphor was effectively excited by the near ultraviolet (UV) light (396 nm) and blue light (466 nm). The main emission peaks of Ba3Gd(BO3)3:Eu3+ phosphor were assigned to the supersensitive transition 5D0-7F2 (611 and 616 nm) of Eu3+ ion when samples were excited at 255 and 396 nm, respectively, and the luminescent intensity of Ba3Gd(BO3)3:Eu3+ at 611 and 616 nm reached to the maximum when the doped content of Eu3+ ion was 10mol.%. Therefore, this phosphor could be a promising red component for possible applications in the field of white LED.  相似文献   

17.
Europium-doped nanocrystalline Y2O3 phosphor layers were coated on the surface of preformed submicron BaSO4 spheres via the sol-gel process.The obtained BaSO4/Y2O3:Eu3+ core-shell phosphors were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM),transmission electron microscopy(TEM),energy dispersive spectroscopy(EDS) and photoluminescence spectra.The results showed that the obtained BaSO4/Y2O3:Eu3+ core-shell phosphors consisted of well-dispersed submicron spherical particles with na...  相似文献   

18.
(Y, Gd)BxV1- xO4-x :Eu3 phosphors were prepared by solid state reaction. The red emission color purity of (Y, Gd)Bx V1 - x O4-x :Eu3 phosphor is much better than that of the recent widely-used commercial red emitting phosphor (Y,Gd)BO3:Eu3 and its relative emission intensity is 84% of the commercial phosphor (Y, Gd)BO3 :Eu3 . It is expected that (Y, Gd) Bx V1 -x O4: Eu3 phosphor will be a promising candidate for PDP (plasma display panels) application.  相似文献   

19.
Y2O2S:Eu3+,Mg2+,Ti4+ nanorods were prepared by a solvothermal procedure.Rod-like Y(OH)3 was firstly synthesized by hydrothermal method to serve as the precursor.Y2O2S:Eu3+,Mg2+,Ti4+ powders were obtained by calcinating the precursor at CS2 atmosphere.The Y2O2S:Eu3+,Mg2+,Ti4+ phosphor with diameters of 30-50 nm and lengths up to 200-400 nm inherited the rod-like shape from the precursor after calcined at CS2 atmosphere.The Y2O2S:Eu3+,Mg2+,Ti4+ nanorods showed hexagonal pure phase,good dispersion and exhibite...  相似文献   

20.
La0.75NbO4:Eu3+0.25 and La0.65NbO4:Eu3+0.25,Bi3+0.10 phosphors were synthesized by solid-state reaction method,and their photoluminescence properties were discussed in detail.With the increased incorporation of the co-activator Bi3+,the charge transfer(CT) bands of Nb5+→O2-and Eu3+→O2-(-280 nm) weakened and a new and significant broad band Bi3+-O2-(-330 nm) appeared,while the peaks at 395 and 466 nm assigned to f-f transitions of Eu3+ was slightly changed.Compared with the commercial phosphor Y2O2S:0.05Eu3+...  相似文献   

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