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1.
单掺杂和共掺杂氟化物纳米晶体的发光特性   总被引:1,自引:1,他引:0       下载免费PDF全文
基质结构的变化为掺杂稀土发光离子提供了不同的局域环境,从而为改变和影响掺杂离子的光发射性质提供了条件。本文采用激光光谱学的方法从实验上研究了基质变化对氟化物纳米晶体中的掺杂稀土Eu3+和Pr3+的光发射性质的影响规律,以及同一基质中单掺杂和共掺杂稀土离子的光发射特性。结果发现:可通过变换基质和离子共掺杂来实现荧光谱线强度和色纯度的改进。依据掺杂离子的能级结构以及纳米晶体基质的对称性变化等因素,对所观测到的实验现象进行了分析讨论。  相似文献   

2.
Heat treatment of Sm-activated lithium and sodium borate glasses which are additionally doped with silver oxide leads to a reduction of the doped silver ions and to the formation of metallic silver nanoparticles indicated by a broad plasmon-related absorption band in the visible spectral range. The influence of the plasmon resonance field enhancement on the Sm3+ fluorescence excitation bands is too small to lead to enhanced fluorescence emission intensities.  相似文献   

3.
The preparation of benzoic acid-functionalized CaF2:Ln3+ (Ln = Eu or Tb) nanoparticles and their sensitized luminescence are described in this report. First, to achieve sufficient proof for energy transfer from benzoic acid (BA) to lanthanide ions doped in nanoparticles, we employ Eu3+ as the microscopic probe and investigate the luminescent spectra of benzoic acid-functionalized CaF2:Eu3+ (BA-CaF2:Eu3+) nanoparticles. Next, to further reveal the difference between sensitized luminescence and common luminescence for Eu3+ doped in CaF2 nanoparticles, we study the emission spectra of BA-CaF2:Eu3+ nanoparticles excited at 286 nm and 397 nm, respectively. Finally, we analyze and compare the luminescent spectra of BA-CaF2:Tb3+ and CaF2:Ce3+, Tb3+ nanoparticles in detail. Our results indicate that both Eu3+ and Tb3+ doped in CaF2 nanoparticles can be efficiently sensitized through benzoic acid.  相似文献   

4.
为研究Yb3+离子浓度变化对Tm3+离子在蓝色波段荧光强度的影响,以NaF和La(NO3)3为原料,采用水热法制备了Tm3+和Yb3+共掺的Tm3+/ Yb3+∶LaF3纳米颗粒.用X射线衍射对LaF3纳米颗粒进行表征的结果显示,纳米晶体结构呈六方相.透射电镜的观测结果显示,纳米颗粒样品大小均匀、分散性良好.在波长为800 nm的激光激发下,观测到了上转换蓝光发射,其中包括波长为474 nm和479 nm的较强的荧光辐射(相应的跃迁为1G4→3H6)和波长位于450 nm的强度较弱的荧光发射(相应的跃迁为1D2→3F4).通过观测不同Yb3+离子浓度条件下共掺Tm3+/Yb3+∶LaF3样品的荧光光谱,研究了Yb3+离子掺杂浓度对于Tm3+离子的荧光发射的影响,并探讨了产生这种现象的原因.研究结果显示,对于1G4→3H6跃迁产生的荧光发射(474 nm),当Yb3+离子浓度增大时,反向能量传递速率的增加导致了荧光强度的增大.然而,当Yb3+离子浓度增大到一定程度时,Yb3+离子激发态能级寿命的减少将引发荧光强度的下降.相比较而言,Yb3+离子的浓度的变化对于1D2→3F4跃迁产生的位于450 nm处荧光强度的影响较弱.  相似文献   

5.
Rare earth doped lead borate glasses and transparent glass-ceramics have been studied using optical spectroscopy. Based on the absorption, emission and its decay and the Judd-Ofelt calculations, several radiative and laser parameters for Ln 3+ (Ln = Pr, Nd, Eu, Dy, Er, Tm) were evaluated. The large values of luminescence lifetime, quantum efficiency of excited state and room temperature peak stimulated emission cross-section suggest efficient laser transitions of Ln 3+ ions in lead borate glasses. The obtained results indicate that lead borate glasses and glass-ceramics containing Ln 3+ ions are promising host matrices for solid-state laser applications.  相似文献   

6.
The spectroscopic characterization of yttria, singly and doubly doped with Ln3+ (Ln=Sm, Eu, Dy, Er, Ho) and Bi3+ ions, is performed through excitation spectra, emission spectra and decay time measurements. The obtained spectroscopic data clearly indicate that energy transfer takes place from Bi3+ to Ln3+ ions. The energy transfer efficiency of Bi3+→Ln3+ and quantum efficiency of Ln3+ were calculated. Upon excitation of 370 nm (Bi3+ excitation band), the quantum efficiency of Ln3+ varies from ~4% to ~44%. The energy transfer efficiency increases continuously with increasing Ln3+ concentrations, whereas the variation of the quantum efficiency of Ln3+ is complicated. The quantum efficiency of Ln3+ is discussed in terms of electron transfer and cross relaxation.  相似文献   

7.
We investigate the luminescent properties of potassium wolframylphosphate glasses doped with Eu3+, Tb3+, and Dy3+ ions whose luminescence is excited by donor-acceptor interaction between the active WO 2 2+ and Ln3+ ions, as well as the migration of energy in the subsystems of each type of the active ions. Comparison of the obtained data with the results of investigation of the spectroscopic properties of Ln3+ in uranylphosphate materials shows that a sufficiently high degree of the ionicity of bonds of Ln3+ with the atoms of its first coordination sphere is preserved in wolframylphosphate matrices. We show that three stages of the decomposition of electron excitations are typical of the WO 2 2+ ions in wolframylphosphate glasses doped with Ln3+ and two stages in nonactivated glasses. The electron excitation energy transfer in the WO 2 2+ −Ln3+ system occurs due to induction-resonance interaction. Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 64, No. 5, pp. 620–625, September–October, 1997.  相似文献   

8.
刘名扬  孙维瑾 《物理学报》2011,60(7):77804-077804
实验中选用Pr3+和Yb3+:ZBLAN玻璃作为频率上转换发光材料,并详细说明了选用这种材料的原因;分析了上转换发光强度与抽运光强度和离子掺杂浓度的关系,从而得出了实现较清晰双频上转换三维立体图像的实验条件. 关键词: 上转换发光 3+和Yb3+离子')" href="#">Pr3+和Yb3+离子 ZBLAN玻璃 吸收光谱  相似文献   

9.
We have combined different rare earth ions (Er3+, Nd3+ and Yb3+) in two dimensional ferroelectric patterns to obtain periodical fluorescent arrays. High refractive-index Er3+ doped CaTiO3 nanocrystals have been embedded into Nd3+ or Yb3+ doped LiNbO3 substrates pre-patterned with a two dimensional arrays of micro-voids. The process of incorporation and consolidation of the optically active nanoparticles into the alternate domain structures leads to luminescent ring-shaped arrangements with innovative geometries and to a micrometer spatial control of the trivalent rare earth ion emitters. Multicolor emission systems and the possibility of chromatic switching at the micrometer scale among the different compounds forming the two dimensional structure is demonstrated.  相似文献   

10.
Er3+/Yb3+/Li+-tridoped BaTiO3 nanocrystals were prepared by a sol-gel method to improve the upconversion (UC) luminescence of rare-earth doped BaTiO3 nanoparticles. Effects of Li+ ion on the UC emission properties of the Er3+/Yb3+/Li+-tridoped BaTiO3 nanocrystals were investigated. The results indicated that tridoping with Li+ ion enhanced the visible green and red UC emissions of Er3+/Yb3+-codoped BaTiO3 nanocrystals under the excitation of a 976 nm laser diode. X-ray diffraction and decay time of the UC luminescence were studied to explain the reasons of the enhancement of UC emission intensity. X-ray diffraction results gave evidence that tridoping with Li+ ion decreased the local symmetry of crystal field around Er3+, which increased the intra-4f transitions of Er3+ ion. Moreover, lifetimes in the intermediate 4 S3/2 and 4I11/2 (Er) states were enhanced by Li+ ion incorporation in the lattice. Therefore, it can be concluded that Li+ ion in rare-earth doped nanocrystals is effective in enhancing the UC emission intensity.  相似文献   

11.
AucoreAu-Agshell nanoparticles and Nd3+ ions co-doped in a novel antimony(III) oxide based dielectric (glass) matrix were synthesized for the first time, by a new very simple single-step methodology involving selective thermo-chemical reduction without employing any external reducing agent. They were characterized by the evolution of UV-vis-NIR absorption and photoluminescence spectra, XRD patterns, TEM and SAED images. XRD and SAED indicate the building of core-shell nanoparticles through the formation of (1 1 1) and (2 0 0) planes whereas TEM advocates the generation of spherical and spheroidal particles of 22-107 nm sizes with various core morphologies. Photoluminescence upconversion exhibits two major emission bands of Nd3+ ions at 540 (green) and 649 (deep-red) nm which undergo about 5-fold intensity enhancement by the nanoparticles. Such enhancement is attributed to the local field effect induced by plasmonic Au-Ag nanoparticles to Nd3+ ions. These nanocomposites are promising for many nanophotonics applications.  相似文献   

12.
Nanometer-sized Eu3+-doped ZnS and Mn2+-doped ZnS particles were prepared by solid-state method at low temperature. The structures and properties of those materials were characterized by X-ray diffraction (XRD) and photoluminescent spectroscopy techniques. The XRD patterns reveal that the doped ZnS nanoparticles belong to zinc-blende structure. The concentration of doping ions has little effect on the sizes of the doped ZnS nanoparticles, which mainly depends on the temperature of preparation. The emission peaks from the 5D07FJ (J=1, 2, and 4) electronic energy transitions of Eu3+ were observed in the emission spectra of the ZnS:Eu3+ nanoparticles. The intensity ratio of the two peaks from the 5D07F1 and 5D07F2 transitions indicates that more Eu3+ ions occupy the sites with no inversion symmetry. For the ZnS:Mn2+ nanoparticles, an orange emission from the 4T16A1 transition of Mn2+ is present, indicating that the doping ions occupy the positions of the ZnS lattices. Meanwhile, UV-induced luminescence enhancement was observed for the ZnS:Mn2+ nanoparticles, the possible reason of which is discussed primarily.  相似文献   

13.
Tetraphosphate glasses doped with different concentration Ln3+ (Ln=Nd, Yb and Er) were prepared. The IR transmission spectra and fluorescence lifetimes were measured. The relationships between IR-fluorescence decay rate and OH group content were investigated and analyzed. The constant kOH-Ln, which represents the strength of interaction between Ln3+ ions and OH groups in the case of energy migration, were calculated for Nd3+, Yb3+ and Er3+ doped tetraphosphate glasses.  相似文献   

14.
掺铒锆钛酸铅镧陶瓷的上转换动力学分析   总被引:1,自引:0,他引:1       下载免费PDF全文
测量了掺铒锆钛酸铅镧(Er3+:PLZT)陶瓷的吸收光谱和上转换荧光光谱,利用Er3+:PLZT的吸收光谱,计算Er3+离子的辐射跃迁概率. 分析了980nm 激发下 Er3+:PLZT 的上转换荧光光谱,观察到明显的上转换荧光,且峰值位于540,564nm附近的绿色荧光带比 678nm 附近的红色荧光带强. 建立了Er3+离子跃迁的速率方程,通过求解速率方程并采用拟合荧光衰减实验曲线的方法,得出 关键词: 频率上转换 3+离子')" href="#">Er3+离子 锆钛酸铅镧陶瓷 速率方程  相似文献   

15.
Infrared-to-visible upconversion luminescence spectra are investigated in Li+ and Er3+ codoped Y2O3 nanocrystals. By introducing Li+ ions, the upconverted emission intensity is found to be greatly enhanced when compared with the nanocrystals with the Li+ absent. The cause of the enhancement is believed to be the modification of the local symmetry of the Er3+ ion, which increases the intra-4f transitions of Er3+ ion, and the homogeneous distribution of Er3+. While in some other Er3+ doped oxides, such as ZnO, ZrO2, etc., the upconversion intensity of Er3+ ions could also be greatly increased by doping Li+.  相似文献   

16.
Up-conversion (UC) is a photoluminescence process which converts few low energy photons to a higher energy photon. This process has more potential usages in many different fields like bioimaging, solar spectrum tuning, and security encoding. Nowadays, researches about UC mostly focusing on biomedical signory and synthesis of nanoparticles. The synthesis of NaYF4 nanoparticles executed under series of pH value condition results in different morphology and photoluminescence effect. Samples in low pH value created better consequent and quality than the specimen which had higher pH value. In addition, we observed NaYF4 samples of doping Li+, realizing that the action of distorting in the local symmetry around rare-earth ions is caused by Li+ doping. The NaYF4 microparticles which doped higher concentration of Li+ has strong fluorescence properties and intensities compared with their corresponding group of Li+-free, the blue emission 479 nm luminescence intensities and 454 nm luminescence intensities in NaYF4:Yb3+, Tm3+ microparticles doped 20 mol% Li+ are enhanced 3 and 8 times, separately. And violet emission luminescence intensities around 345 and 360 nm are about 10 and 7 times, respectively. The result indicated that the improved UC luminescence of NaYF4:Yb3+. Tm3+ microparticles with Li+ doping have potentially applications.  相似文献   

17.
Direct synthesis of ZnS nanocrystallites doped with Ti3+ or Ti4+ by precipitation has led to novel photoluminescence properties. Detailed X-ray diffraction (XRD), fluorescence spectrophotometry, UV–vis spectrophotometry and X-ray photoelectron spectroscopy (XPS) analysis reveal the crystal lattice structure, average size, emission spectra, absorption spectra and composition. The average crystallite size doped with different mole ratios, estimated from the Debye–Scherrer formula, is about 2.6±0.2 nm. The nanoparticles can be doped with Ti3+ and Ti4+ during the synthesis without the X-ray diffraction pattern being altered. The strong and stable visible-light emission has been observed from ZnS nanocrystallites doped with Ti3+ (its maximum fluorescence intensity is about twice that of undoped ZnS nanoparticles). However, the fluorescence intensity of the ZnS nanocrystallites doped with Ti4+ is almost the same as that of the undoped ZnS nanoparticles. The emission peak of the undoped sample is at 440–450 nm. The emission spectrum of the doped sample consists of two emission peaks, one at 420–430 nm and the other at 510 nm. Received: 27 April 2001 / Accepted: 16 August 2001 / Published online: 17 October 2001  相似文献   

18.
ABSTRACT

In this work, non-collinear spin DFT + U approaches with spin-orbit coupling (SOC) are applied to Ln3+ doped β-NaYF4 (Ln = Ce, Pr) nanocrystals in Vienna ab initio Simulation Package taking into account unpaired spin configurations using the Perdew–Burke–Ernzerhof functional in a plane wave basis set. The calculated absorption spectra from non-collinear spin DFT + U approaches are compared with that from spin-polarised DFT + U approaches. The spectral difference indicates the importance of spin–flip transitions of Ln3+ ions. Suite of codes for nonadiabatic dynamics has been developed for 2-component spinor orbitals. On-the-fly nonadiabatic coupling calculations provide transition probabilities facilitated by nuclear motion. Relaxation rates of electrons and holes are calculated using Redfield theory in the reduced density matrix formalism cast in the basis of non-collinear spin DFT + U with SOC. The emission spectra are calculated using the time-integrated method along the excited state trajectories based on nonadiabatic couplings.  相似文献   

19.
ZnS nanoparticles with Mn2+ doping (0.5-20%) have been prepared through a simple chemical method, namely the chemical precipitation method. The structure of the nanoparticles has been analyzed using X-ray diffraction (XRD), scanning electron microscope (SEM), transmission electron microscope (TEM) and UV-vis spectrometer. The size of the particles is found to be 3-5 nm range. Photoluminescence spectra were recorded for undoped ZnS nanoparticles using an excitation wavelength of 320 nm, exhibiting an emission peak centered at around 445 nm. However, from the Mn2+-doped samples, a yellow-orange emission from the Mn2+4T1-6A1 transition is observed along with the blue emission. The prepared Mn2+-doped sample shows efficient emission of yellow-orange light with the peak emission 580 nm with the blue emission suppressed. The maximum PL intensity is observed only at the excitation energy of 3.88 eV (320 nm). Increase in stabilizing time up to 48 h in de-ionized water yields the enhancement of emission intensity of doped (4% Mn2+) ZnS. The correlation made through the concentration of Mn2+ versus PL intensity resulted in opposite trend (mirror image) of blue and yellow emissions.  相似文献   

20.
Zinc phosphate glasses doped with Gd2O3:Eu nanoparticles and Eu2O3 were prepared by conventional melt-quench method and characterized for their luminescence properties. Binary ZnO-P2O5 glass is characterized by an intrinsic defect centre emission around 324 nm. Strong energy transfer from these defect centres to Eu3+ ions has been observed when Eu2O3 is incorporated in ZnO-P2O5 glasses. Lack of energy transfer from these defect centres to Eu3+ in Gd2O3:Eu nanoparticles doped ZnO-P2O5 glass has been attributed to effective shielding of Eu3+ ions from the luminescence centre by Gd-O-P type of linkages, leading to an increased distance between the luminescent centre and Eu3+ ions. Both doped and undoped glasses have the same glass transition temperature, suggesting that the phosphate network is not significantly affected by the Gd2O3:Eu nanoparticles or Eu2O3 incorporation.  相似文献   

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