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1.
采用溶胶 凝胶法制备了稀土离子掺杂 (Eu3 ,Tb3 )的氧磷灰石三元稀土硅酸盐Ca2 Y8(SiO4 ) 6 O2 发光薄膜。通过X射线衍射 (XRD) ,红外光谱 (IR) ,扫描电镜 (SEM)等方法对薄膜的组成、结构、颗粒尺寸、形貌及厚度进行了研究 ,通过发光光谱对薄膜的发光性质进行了分析。XRD结果表明 70 0℃时薄膜尚处于非晶态 ,80 0℃时已开始有Ca2 Y8(SiO4 ) 6 O2 的物相形成 ,10 0 0℃时结晶已完全。这一点和红外光谱的结果相符。发光光谱测试表明Ca2 Y8(SiO4 ) 6 O2 ∶Eu3 薄膜显示了很强的红光发射 ,并以Eu3 的5D0 -7F2 (616nm)超灵敏跃迁为最强一组。Ca2 Y8(SiO4 ) 6 O2 ∶Tb3 的发射光谱由蓝光发射和绿光发射两部分组成 ,前者对应于5D3-7FJ,后者对应于5D4 -7FJ(J =6,5 ,4,3 ) ,且以5D4 -7F5(5 44nm)绿光发射为最强。  相似文献   

2.
TiO2基体掺杂铕,钇纳米粉体的制备和光谱特性   总被引:6,自引:0,他引:6  
采用Sol-Gel法在TiO2基质中掺杂稀土离子Eu3+, Y3+制备TiO2∶(Eu,Y)纳米粉体, 讨论不同热处理温度、不同稀土离子浓度及不同比例对光致发光强度的影响. 结果表明随热处理温度的升高, 荧光强度增加, Eu3+(4.35 mol%)时荧光强度最大, Y3+对荧光强度有明显的增强作用, 当Eu3+∶Y3+为1∶1时强度最强. 目标产物的平均粒径为20 nm.  相似文献   

3.
采用碳酸盐前躯体高温分解法合成了Sr1-xZnxY2S4:Er3+, Sr1-xZnxY2S4:Eu2+和Sr1-xZnxY2S4:Er3+, Eu2+红色荧光粉. XRD图谱表明, Zn2+掺杂量x<0.2 mol 时, 粉末样品为CaFe2O4型正交晶体. Zn2+离子在Sr1-xZnxY2S4:Er3+, Eu2+中的固溶量(x mol)对荧光粉的发射强度影响很大. 随着Zn2+离子掺杂浓度的增加, Sr1-xZnxY2S4:Er3+, Eu2+(SZYSEE)紫外区激发峰(200~413 nm)发生红移, 并与可见光激发带(413~600 nm)形成一个连续的宽带谱, 与紫外和GaN基LED芯片辐射都有良好的匹配性. 当Zn2+掺杂量为0.1 mol时, SZYSEE的发光强度达到最大, 其发光强度比未掺Zn2+的增强10.7倍. Sr0.9Zn0.1Y1.76S4:0.24Er3+, 0.006Eu2+是一种潜在的白光LED用红色荧光粉.  相似文献   

4.
采用高温固相反应法分别合成了变价稀土镨和镱离子掺杂的绿色荧光粉[Ba(2-n-1.5x)REx]SiO4:nEu2+ (n=0.03, RE=Pr, Yb;x=0, 0.02,0.05,0.10).结果表明: 所有合成荧光粉的激发峰均为250~400 nm的宽峰, 与近紫外LED的发射光波长相匹配.发射峰位于450~550 nm之间, 是Eu2+的5d-4f跃迁的典型发射.Pr3+和Yb3+的掺入并未改变Ba2SiO4:Eu2+的相组成, 但对荧光强度的影响大, 且与掺杂元素、掺杂量和煅烧温度相关.当掺杂Pr3+和Yb3+的量为x=0.02时, 经1150 ℃煅烧所得荧光粉的发光强度分别是未掺杂时的595%和168%.证明三价稀土离子掺杂可以导致基质中的电荷缺陷而敏化Eu2+离子的发光, 而变价稀土离子的掺杂可以大大提高电荷缺陷, 导致荧光强度的进一步提高.  相似文献   

5.
KSrBP2O8:RE(RE=Eu2+,Tb3+,Eu3+)荧光粉的制备与发光性能研究   总被引:1,自引:0,他引:1  
采用高温固相反应法制备了KSrBP2O8:RE(RE=Eu2+,Tb3+,Eu3+)系列荧光粉。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:稀土离子的掺入没有改变荧光粉的主晶相。利用荧光光谱仪对样品的发光性能进行了测试,发现在近紫外光激发下掺杂Eu2+离子的样品具有宽带发射峰,最强发射位于450 nm左右,对应于Eu2+离子的4f65d1→4f7辐射跃迁。随着Eu2+掺杂量的增加,发射光从蓝光逐渐转变到蓝白光。另外,KSrBP2O8:Tb3+和KSrBP2O8:Eu3+能够在近紫外光激发下分别发射出绿光和红光,其最佳掺杂浓度分别为0.04%和0.08%(摩尔分数)。  相似文献   

6.
采用均相沉淀法制备了Ag@SiO2@(Y,RE)(OH)CO3.H2O(RE=Eu,Tb)核壳结构微球,经过700℃焙烧后成功制备出Ag@SiO2@Y2O3:RE3+(RE=Eu,Tb)核壳结构发光材料。XRD谱图表明Ag核具有结晶良好的面心立方结构;SiO2层为无定型;Y2O3层为立方晶系。FTIR谱图表明核壳之间以化学键相结合。TEM照片表明合成了核壳结构的表面光滑的复合微球,分散良好,大小均匀,Ag核的粒径分布为50±20 nm;SiO2层的厚度为20~30 nm;Y2O3:RE3+(RE=Eu,Tb)层厚度约为125 nm。电子衍射图像表明Ag@SiO2@Y2O3:RE3+(RE=Eu,Tb)为多晶结构。UV-Vis光谱表明表面包覆使Ag离子的等离子体共振吸收峰发生了红移。荧光光谱表明Ag@SiO2@Y2O3:Eu3+具有Eu3+的特征红光发射,Ag@SiO2@Y2O3:Tb3+具有Tb3+的特征绿光发射,但是发光强度均比纯的Y2O3:RE3+有所减弱,说明贵金属的引入对稀土Y2O3:RE3+(RE=Eu,Tb)的发光起到了荧光猝灭的作用。  相似文献   

7.
采用高温固相反应法在还原气氛下制备了Li2Sr0.995-x SiO4:0.005Eu2+,xLa3+荧光粉。利用X射线衍射仪、荧光光谱仪和紫外可见分光光度计对样品的晶体结构、激发光谱、发射光谱与荧光衰减寿命以及漫反射光谱进行测试分析。实验结果表明:所制得的样品为单一相的Li2SrSiO4晶体结构化合物。Li2Sr0.995-x SiO4:0.005Eu2+,xLa3+荧光粉的激发光谱均呈现出宽激发带,其中最强的激发峰位于408 nm左右。在此波长激发下可得到峰值位于570 nm左右的宽波段单峰发射光谱,其对应于Eu2+离子4f65d1→4f7电子跃迁。La3+掺杂Li2SrSiO4:Eu2+荧光粉基质产生了晶格缺陷[2La·Sr·V″Sr],其可以吸收光能并将能量传递给发光中心离子Eu2+,进而增强Li2Sr0.995SiO4:0.005Eu2+荧光粉的发光强度。漫反射光谱和荧光衰减寿命测试结果也证实La3+掺杂能够增加Eu2+的激发态吸收能量,延长发光中心Eu2+离子荧光衰减寿命。  相似文献   

8.
用微波法合成了Gd3 和Eu3 共掺杂的Sr2CeO4荧光体.Gd3 对Sr2CeO4:Eu的发光起不同的作用:当Eu3 浓度较低(掺杂浓度为1 mol%)时,Gd3 离子起猝灭作用;当Eu3 浓度较高(掺杂浓度为8 mol%)时,Gd3 离子起敏化作用,尤其是Gd3 离子掺杂浓度为3 mol%时,Eu3 的5D0→7F2(614 nm)跃迁发射增强为Sr2CeO4:Eu荧光强度的145%.  相似文献   

9.
稀土荧光粉预制品制备新工艺   总被引:3,自引:0,他引:3  
分析了高温固相合成生产稀土荧光粉和湿法共沉淀预制备法生产稀土荧光粉的特点,表明通过湿法共沉淀可以在较短时间和较低温度下合成稀土荧光粉, 介绍了Y2O3∶ Eu, LaPO4∶ Ce, Tb和SrAl2O4∶ Eu2+的湿法共沉淀预制备的方法.  相似文献   

10.
采用溶胶-凝胶方法制备了从1%-10%不同浓度Eu离子掺入的SiO2玻璃,并对于不同浓度掺杂和退火处理对其结构和发光性能的影响进行了研究。X射线衍射测试显示,制备出了Eu离子掺入的无定形SiO2玻璃。SEM显示,退火处理后的样品呈多孔“蜂窝”状结构。稀土离子掺入的浓度和退火温度等对Eu离子掺入的SiO2玻璃的结构和荧光发光性质有十分显著的影响。发现稀土离子掺杂浓度从1%-10%的过程中出现了两次浓度淬灭等现象。  相似文献   

11.
Bi3+ and lanthanide ions have been codoped in metal oxides as optical sensitizers and emitters. But such codoping is not known in typical semiconductors such as Si, GaAs, and CdSe. Metal halide perovskite with coordination number 6 provides an opportunity to codope Bi3+ and lanthanide ions. Codoping of Bi3+ and Ln3+ (Ln=Er and Yb) in Cs2AgInCl6 double perovskite is presented. Bi3+-Er3+ codoped Cs2AgInCl6 shows Er3+ f-electron emission at 1540 nm (suitable for low-loss optical communication). Bi3+ codoping decreases the excitation (absorption) energy, such that the samples can be excited with ca. 370 nm light. At that excitation, Bi3+-Er3+ codoped Cs2AgInCl6 shows ca. 45 times higher emission intensity compared to the Er3+ doped Cs2AgInCl6. Similar results are also observed in Bi3+-Yb3+ codoped sample emitting at 994 nm. A combination of temperature-dependent (5.7 K to 423 K) photoluminescence and calculations is used to understand the optical sensitization and emission processes.  相似文献   

12.
In this paper we describe the phosphine-catalyzed [3 + 2], [3 + 3], [4 + 3], and [3 + 2 + 3] annulations of azomethine imines and allenoates. These processes mark the first use of azomethine imines in nucleophilic phosphine catalysis, producing dinitrogen-fused heterocycles, including tetrahydropyrazolo-pyrazolones, -pyridazinones, -diazepinones, and -diazocinones. Counting the two different reaction modes in the [3 + 3] cyclizations, there are five distinct reaction pathways-the choice of which depends on the structure and chemical properties of the allenoate. All reactions are operationally simple and proceed smoothly under mild reaction conditions, affording a broad range of 1,2-dinitrogen-containing heterocycles in moderate to excellent yields. A zwitterionic intermediate formed from a phosphine and two molecules of ethyl 2,3-butadienoate acted as a 1,5-dipole in the annulations of azomethine imines, leading to the [3 + 2 + 3] tetrahydropyrazolo-diazocinone products. The incorporation of two molecules of an allenoate into an eight-membered-ring product represents a new application of this versatile class of molecules in nucleophilic phosphine catalysis. The salient features of this protocol--the facile access to a diverse range of nitrogen-containing heterocycles and the simple preparation of azomethine imine substrates--suggest that it might find extensive applications in heterocycle synthesis.  相似文献   

13.
Up-conversion luminescence characteristics under 975 nm excitation have been investigated with Tb3+/Tm3+/Yb3+ triply doped tellurite glasses. Here, green (547 nm: (5)D(4)-->(7)F(4)) and red (660 nm: (5)D(4)-->(7)F(2)) up-conversion (UC) luminescence originating from Tb3+ is observed strongly, because of the quadratic dependences of emission intensities on the excitation power. Especially, the UC luminescence was intensified violently with the energy transfer from the Tm3+ ions involves in the Tb3+ excitation. To the Tb3+/Tm3+/Yb3+ triply doped glass system, a novel up-conversion mechanism is proposed as follows: the energy of (3)G(4) level (Tm3+) was transferred to (5)D(4) (Tb(3+)) and the 477-nm UC luminescence of Tm3+ was nearly quenched.  相似文献   

14.
The origin of the pseudoprecession phenomenon is investigated through a computational study of the time evolution of H3+ and Li3+ by electron nuclear dynamics theory. In particular, the pseudorotation of both molecules is shown to induce a spatial rotation, which in turn leads to Coriolis coupling of the two orthogonal nuclear shape deformation modes. This effect is rooted in an anisotropy of the molecular ground state potential energy surface that is caused by the interaction between the D3h ground state and a twofold degenerate first excited state. Computations are performed for a variety of vibrational energies. In addition, the impact of the anharmonicity of the ground state potential surface on the shape deformation modes and the coupling between them is discussed. © 2001 John Wiley & Sons, Inc. Int J Quantum Chem, 2001  相似文献   

15.
The absorption and emission spectroscopies of Er3+ doped and Er3+/Yb3+ codoped Ca(PO3)2, Sr(PO3)2 and Ba(PO3)2 glasses have been studied. From the Judd-Ofelt intensity parameters, the spontaneous emission probabilities of some relevant transitions and the radiative lifetimes of several excited states of Er3+ have been calculated. The decay curves of the Er3+ emission at 1.5 microm have been measured at different temperatures. The data have been fitted using a stretched exponential function and the obtained experimental lifetimes have been compared with the calculated radiative lifetimes. The difference between the experimental and calculated lifetimes is attributed to the presence of traces of OH groups in the host glasses. The absolute OH content in some glasses has been determined from the infrared spectra. The emission spectra at 1.5 microm of the Er3+ ion in the codoped glasses have been measured at different temperatures. The integrated emission intensities decrease significantly on passing from room temperature to 13 K, suggesting a temperature dependence of the rate of the energy transfer process between Yb3+ and Er3+.  相似文献   

16.
Intensity parameters of Sm3+ in borate glasses were obtained by fitting the oscillator strengths to the Judd-Ofelt formula and a study of energy transfer from gadolinium to samarium was performed. An increase of samarium fluorescence originating from the 4G52 level was observed in the presence of gadolinium, in the concentration range of 0.1–3 wt% samarium with gadolinium constant at 3 wt%. The intensity of samarium fluorescence on excitation at 273 nm increased by one order of magnitude in the presence of gadolinium. From the excitation spectrum of the double-doped glasses (Gd + Sm), it was deduced that energy absorbed by gadolinium is transferred from 6P72 gadolinium levels to the 4P32 and 4P52 samarium levels.The mechanism of this energy transfer was obtained by plotting the energy transfer probabilities as a function of samarium concentration. A linear dependence of η0η (η intensity of gadolinium in the presence of samarium) versus square of concentration of Sm + Gd is obtained. From this it is concluded that the transfer is of electric-multipolar type, mainly dipole-dipole. A small increase (about 10%) of fluorescence of samarium in the presence of gadolinium excited at levels where no energy transfer can take place is attributed to the fact that the quenching of samarium occurring by the cross relaxation (4G526F92) (6H526F92) is suppressed by the presence of gadolinium as seen from concentration dependence of samarium doped glasses compared to double-doped glasses.  相似文献   

17.
The structural and optical properties of the Er3+-Tm3+-Yb3+codoped CaMoO4 phosphors prepared by chemical route have been explored. The crystalline structures of the prepared phosphors have been investigated with the help of X-ray diffraction analysis. The presence of different vibrational modes and absorption bands arising due to the transitions from the ground state to different excited states of rare earth ions have been identified using the Raman and UV-VIS-NIR absorption spectra of the developed phosphor, respectively. The concentration quenching effect on the luminescence property of the prepared materials has been explained in detail. The upconversion luminescence property of the Er3+-Tm3+-Yb3+codoped CaMoO4 phosphor annealed at different temperatures under 980 nm and 808 nm excitations have been reported. The energy transfer Er3+ → Tm3+, Yb3+ → Er3+ and Tm3+ has been found to be responsible for efficient UC emission. The dipole-dipole interaction is observed to be responsible for the concentration quenching of the luminescence intensity. The effect of annealing temperature on the upconversion luminescence property has been explained in detail. The results suggest that the developed tri-doped phosphor may be suitable in making the efficient NIR to visible upconverter and lighting based optical devices.  相似文献   

18.
19.
Tb~(3+)在YAG中的发光及Tb~(3+)与Tm~(3 +)间的能量传递   总被引:6,自引:0,他引:6  
周誓红  张思远  张静筠 《化学研究》2000,11(1):16-17,37
采用溶胶 -凝胶方法合成了系列化合物 (Y1 -x- yTbxTmy) 3Al5O1 2 ,研究了Tb3+在该化合物中的发光及其浓度对发光性质的影响 ,以及Tb3+与Tm3+间的能量传递现象。  相似文献   

20.
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