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1.
采用高温固相法合成了绿色荧光粉Ca3Y2Si3O12:Tb3+.XRD检测结果显示,荧光粉主晶相为Ca3Y2Si3O12,属单斜晶系.荧光光谱分析表明:Ca3Y2Si3O12:Tb3+硅酸盐荧光粉可以被370 nm的近紫外光激发,发射绿光,主发射峰位于490 nm(5D47F6),544 nm(5D47F5),585 nm(5D47F4)和621 nm(5D47F3).用544 nm最强峰监测,得到主激发峰位于370 nm的激发光谱,此光谱覆盖了300~450 nm的波长范围.研究了煅烧条件、掺杂浓度及Ce3+共掺杂对荧光粉发光性能的影响:在1 400 ℃下经二次煅烧 6 h得到的样品的发光性能最佳,Tb3+离子的最佳掺杂浓度为20mol%,Ce3+离子共掺杂能够提高荧光粉的发光强度,其最佳掺杂量为4mol%,说明存在Ce3+→Tb3+的能量传递.  相似文献   

2.
采用高温固相法合成了绿色荧光粉Ca3Y2Si3O12:Tb3+。XRD检测结果显示,荧光粉主晶相为Ca3Y2Si3O12,属单斜晶系。荧光光谱分析表明:Ca3Y2Si3O12:Tb3+硅酸盐荧光粉可以被370nm的近紫外光激发,发射绿光,主发射峰位于490nm(5D47F6),544nm(5D47F5),585nm(5D47F4)和621nm(5D47F3)。用544nm最强峰监测,得到主激发峰位于370nm的激发光谱,此光谱覆盖了300~450nm的波长范围。研究了煅烧条件、掺杂浓度及Ce3+共掺杂对荧光粉发光性能的影响:在1400℃下经二次煅烧6h得到的样品的发光性能最佳,Tb3+离子的最佳掺杂浓度为20mol%,Ce3+离子共掺杂能够提高荧光粉的发光强度,其最佳掺杂量为4mol%,说明存在Ce3+→Tb3+的能量传递。  相似文献   

3.
采用优化的高温固相方法制备了稀土离子Eu3+和Tb3+掺杂的La7O6(BO3)(PO42系荧光材料,并对其物相行为、晶体结构、光致发光性能和热稳定性进行了详细研究。结果表明,La7O6(BO3)(PO42:Eu3+材料在紫外光激发下能够发射出红光,发射光谱中最强发射峰位于616 nm处,为5D07F2特征能级跃迁,Eu3+的最优掺杂浓度为0.08,对应的CIE坐标为(0.610 2,0.382 3);La7O6(BO3)(PO42:Tb3+材料在紫外光激发下能够发射出绿光,发射光谱中最强发射峰位于544 nm处,对应Tb3+5D47F5能级跃迁,Tb3+离子的最优掺杂浓度为0.15,对应的CIE坐标为(0.317 7,0.535 2)。此外,对2种材料的变温光谱分析发现Eu3+和Tb3+掺杂的La7O6(BO3)(PO42荧光材料均具有良好的热稳定性。  相似文献   

4.
采用高温固相法合成了NaBaPO4:Tb3+绿色荧光粉,并研究了材料的发光性质.NaBaPO4:Tb3+材料呈多峰发射,发射峰位于437、490、543、587和624nm,分别对应Tb3+的5D3→7F4和5D4→7FJ=6,5,4,3跃迁发射,主峰为543nm;监测543nm发射峰,所得激发光谱由4f75d1宽带吸收(200-330nm)和4f-4f电子吸收(330-400nm)组成,主峰为380nm.研究了Tb3+掺杂浓度,电荷补偿剂Li+、Na+、K+和Cl-,及敏化剂Ce3+对NaBaPO4:Tb3+材料发射强度的影响.结果显示:调节激活剂浓度、添加电荷补偿剂或敏化剂均可以在很大程度上提高材料的发射强度.  相似文献   

5.
研究了纳米银对分别以水、重水、乙醇和二甲基甲酰胺为溶剂的铕-吡啶-2,6-二羧酸(Eu(Ⅲ)DPA)配合物溶液的荧光增强效应. 研究结果表明,Eu(Ⅲ)DPA溶液中加入纳米银,电偶极跃迁(5D07F2)和磁偶极跃迁(5D07F1)发射强度先增强而后逐渐下降,5D07F2的荧光增强效率高于5D07F1的荧光增强效率. 在乙醇溶剂中纳米银对Eu(Ⅲ)DPA溶液的荧光增强效应最大. 在水或重水或乙醇溶剂中,Eu(Ⅲ)DPA的不对称率明显提高,而在二甲基甲酰胺溶剂中几乎不变. 分析认为,纳米银对Eu(Ⅲ)DPA溶液荧光的影响与纳米银表面等离子体共振与激发态荧光中心强烈耦合以及表面等离子体再吸收有关.  相似文献   

6.
通过高温固相法合成了双钙钛矿型Ca2Gd1-xTaO6xTb3+(CGTO:xTb3+)绿色荧光粉。采用X射线衍射、扫描电镜、荧光光谱、荧光衰减曲线、量子效率(η)测试分别表征了CGTO: xTb3+荧光粉的物相、形貌和荧光性质。在紫外光激发下,CGTO: xTb3+荧光粉实现了较强的绿光发射,绿光为Tb3+离子的5D4-7F5跃迁。通过变温发射光谱研究发现CGTO:0.15Tb3+荧光粉的热猝灭活化能为0.181 9 eV。在255 nm的激发下,最佳Tb3+掺杂浓度的CGTO:0.15Tb3+荧光粉的量子效率为32.32%。  相似文献   

7.
采用硅酸盐作为基质材料,通过高温固相法合成了Li4SrCa(SiO42:Eu3+红色荧光粉。通过X射线粉末衍射、X射线光电子能谱、透射电镜和荧光光谱,对所得样品的物相、形貌及其发光性能进行了表征分析。结果表明,掺入Eu3+后,Li4SrCa(SiO42的晶体结构并没有发生改变。在393 nm光激发下,荧光粉的荧光光谱中693 nm处发射峰强度最强。以693 nm作为监测波长,荧光激发峰分别为361 nm(7F05D4)、375 nm(7F05G3)、413 nm(7F05D3)、393 nm(7F05L6)和464 nm(7F05D2),即样品对近紫外和蓝光有较好的吸收。利用发射光谱研究了Eu3+掺杂浓度(物质的量分数)对荧光粉发光强度的影响。当Eu3+的掺杂浓度x=0.10时,样品发射强度最强,发射红光,其色坐标为(0.637 5,0.353 7)。通过Dexter强度与浓度关系分析了浓度猝灭机制。  相似文献   

8.
采用柠檬酸溶胶凝胶燃烧合成法制备了一系列组成的(Y,Tb)3Al5O12∶Ce3+,Sm3+荧光粉。通过X射线衍射、荧光光谱研究了不同Sm3+离子共掺杂浓度下(Y,Tb)AG∶Ce3+荧光粉的晶体结构及光致发光性能。Rietveld全图拟合(Rietveld method of whole pattern fitting)结果表明:掺杂后样品仍为纯立方石榴石相,随着Sm3+离子共掺杂浓度的增加,样品的晶胞参数增大。在467 nm激发下,激发能由Ce3+离子向Sm3+离子单向传递,从而在617nm处出现红光发射。Tb3+离子取代不利于Ce3+离子与Sm3+离子的能量传递,同时Ce3+离子受更强的晶体场作用及与O2-离子间增强的共价性使发射主峰红移,Sm3+掺杂的TAG∶Ce体系中,激发能由敏化剂Ce3+离子向激活剂Sm3+离子的传递路径包括5d→4f2F5/2,7/2(Ce3+)和7F65D4(Tb3+)到4G5/26H7/2(Sm3+)两部分。  相似文献   

9.
Calcium and barium zirconate powders based upon CaZrO3:Eu3+,A and BaZrO3:Eu3+,A (A=Li+, Na+, K+) were prepared by combustion synthesis method and heating to ~1000℃ to improve crystallinity.The structure and morphology of materials were examined by X-ray diffraction (XRD) and scanningelectron microscopy (SEM). XRD results showed that CaZrO3:Eu3+,A and BaZrO3:Eu3+,A (A=Li+, Na+, K+) perovskites possessed orthorhombic and cubic structures, respectively. The morphologies of all powderswere very similar consisting of small, coagulated, cubical particles with narrow size distributions andsmooth and regular surfaces. The characteristic luminescences of Eu3+ ions in CaZrO3:Eu3+,A (A=Li+, Na+, K+) lattices were present with strong emissions at 614 and 625 nm for 5D07F2 transitions with other weakeremissions observed at 575, 592, 655, and 701 nm corresponding to 5D07Fn transitions (where n=0, 1, 3, 4 respectively). In BaZrO3:Eu3+ both the 5D07F1 and 5D07F2 transitions at 595 and 613 nm were strong.Photoluminescence intensities of CaZrO3:Eu3+ samples were higher than those of BaZrO3:Eu3+ lattices. Thisremarkable increase of photoluminescence intensity (corresponding to 5D07Fn transitions) was observedin CaZrO3:Eu3+ and BaZrO3:Eu3+ if co-doped with Li+ ions. An additional broad band composed of manypeaks between 440 to 575 nm was observed in BaZrO3:Eu3+,,A samples. The intensity of this band wasgreatest in Li+ co-doped samples and lowest for K+ doped samples.  相似文献   

10.
李艳秋  吴小说  李夏 《无机化学学报》2008,24(11):1738-1742
溶液法合成了配合物{[Tb(3-IBA)3(H2O)2]·0.5(4,4′-bipy)}n(3-IBA=3-碘苯甲酸根;4,4′-bipy=4,4′-联吡啶),并通过X-射线衍射单晶结构分析、红外光谱、紫外光谱、荧光光谱以及热重分析对配合物进行了结构和性质表征。配合物晶体属三斜晶系,P1空间群。该配合物具有一维链状结构。Tb3+离子与8个O原子配位,其中6个O原子来自5个3-碘苯甲酸根,2个O原子来自水分子。相邻Tb3+离子通过2个双齿桥联的3-碘苯甲酸根联结成一维链状结构。未配位的4,4′-联吡啶分子与配位水分子之间形成氢键,并将相邻的一维链联结起来形成二维网状结构。沿a轴的分子堆积形成一维孔道,是由于相邻一维链的苯环之间部分重叠而形成的。在紫外光照射下,配合物发出很强的绿色荧光。配合物的荧光光谱中,4个峰位于490、544、583和619 nm,分别对应于Tb3+离子的5D47F65D47F55D47F45D47F3跃迁。  相似文献   

11.
Vacuum ultraviolet (VUV) excitation and photoluminescent (PL) properties of Eu3+ and Tb3+ ion-doped aluminate phosphors, GdCaAl3O7:Eu3+ and GdCaAl3O7:Tb3+ have been investigated. X-ray diffraction (XRD) patterns indicate that the phosphor GdCaAl3O7 forms without impurity phase at 900 °C. Field emission scanning electron microscopy (FE-SEM) images show that the particle size of the phosphor is less than 3 μm. Upon excitation with VUV irradiation, the phosphors show a strong emission at around 619 nm corresponding to the forced electric dipole 5D07F2 transition of Eu3+, and at around 545 nm corresponding to the 5D47F5 transition of Tb3+. The results reveal that both GdCaAl3O7:RE3+ (RE=Eu, Tb) are potential candidates as red and green phosphors, respectively, for use in plasma display panel (PDP).  相似文献   

12.
CeF3 and CeF3:Tb3+ nanocrystals were successfully synthesized through a facile and effective polyol-mediated route with ethylene glycol (EG) as solvent. Various experimental techniques including X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), and photoluminescence (PL) spectra as well as decay dynamics were used to characterize the samples. The results indicated that the content of NH4F and reactant concentrations were key factors in the product shape and size. Excessive NH4F was necessary for the formation of hexagonal nanoplates. The specific morphology of product can be controlled by changing the NH4F content and reactant concentrations. In addition, Tb3+ doped-CeF3 sample shows strong green emission centered at 544 nm corresponding to the 5D4-7F5 transition of Tb3+. Due to the decrease of nonradiative decay rate, the lifetime of 5D4 level of Tb3+ become longer gradually upon increasing the size of product.  相似文献   

13.
长余辉发光材料的研究与应用,已有近100年的历史,目前仍在许多领域中有着重要应用。此类材料与其他光致发光材料具有相同的发光性能.只是更注重其发光的衰减过程和热释光性能。如.ZnS:Cu作为黄绿色的长余辉发光材料,在1992年以前是余辉性能最好的长余辉发光材料,一直处于发光研究工作的中心。  相似文献   

14.
采用水热法制备出Ca9Y(PO47:Ce3+,Tb3+纳米荧光粉,通过XRD、SEM和荧光光谱等对样品进行了分析,研究在Ca9Y(PO47基质中引入Ce3+,Tb3+离子对发光性能的影响规律。研究发现因Tb3+离子自身能量交叉驰豫的存在,使得单掺Tb3+时,通过调节Tb3+离子的浓度可以实现对发光颜色的控制。同时研究了Ce3+-Tb3+之间的能量传递为电多极相互作用的偶极-四极机制,Ce3+-Tb3+之间最大的能量传递效率为55.6%。Ca9Y(PO47:Ce3+,Tb3+的发光颜色可以通过激活离子之间的能量传递和共发射得到可控调节。SEM分析表明荧光粉颗粒尺寸在100 nm左右,分散性好。  相似文献   

15.
We present an efficient way to search a host for ultraviolet (UV) phosphor from UV nonlinear optical (NLO) materials. With the guidance, Na3La2(BO3)3 (NLBO), as a promising NLO material with a broad transparency range and high damage threshold, was adopted as a host material for the first time. The lanthanide ions (Tb3+ and Eu3+)-doped NLBO phosphors have been synthesized by solid-state reaction. Luminescent properties of the Ln-doped (Ln=Tb3+, Eu3+) sodium lanthanum borate were investigated under UV ray excitation. The emission spectrum was employed to probe the local environments of Eu3+ ions in NLBO crystal. For red phosphor, NLBO:Eu, the measured dominating emission peak was at 613 nm, which is attributed to 5D0-7F2 transition of Eu3+. The luminescence indicates that the local symmetry of Eu3+ in NLBO crystal lattice has no inversion center. Optimum Eu3+ concentration of NLBO:Eu3+ under UV excitation with 395 nm wavelength is about 30 mol%. The green phosphor, NLBO:Tb, showed bright green emission at 543 with 252 nm excited light. The measured concentration quenching curve demonstrated that the maximum concentration of Tb3+ in NLBO was about 20%. The luminescence mechanism of Ln-doped NLBO (Tb3+ and Eu3+) was analyzed. The relative high quenching concentration was also discussed.  相似文献   

16.
采用坩埚下降法生长了Tm3+掺杂浓度为0.45%,0.90%,1.63%与3.25%(摩尔分数,x)的LiLuF4单晶.测试了样品的电感耦合等离子体原子发射光谱(ICP-AES)、X射线衍射(XRD)谱、吸收光谱(1400-2000 nm),并且分析比较了808 nm半导体激光器(LD)激发下荧光光谱. 结果表明:当Tm3+的浓度从0.45%变化到3.25%时,1800 nm处的荧光强度呈现了先增后减的趋势,当掺杂浓度约为0.90%时达到最大值,而位于1470 nm处的荧光强度则呈现了相反的趋势. Tm3+3F4能级的荧光衰减寿命随着掺杂浓度的增加不断减小. 1800 nm处的这种荧光强度变化归结于Tm3+离子间的交叉驰豫效应(3H6,3H43F4,3F4)和自身的浓度猝灭效应. 同时计算得到了浓度为0.90%的样品在1890 nm处的最大发射截面为0.392×10-20 cm2. 并且根据Judd-Ofelt 理论所得寿命和测定的荧光寿命计算得到了3F43H6的最大量子效率约为120%.  相似文献   

17.
The new oxyborate phosphors, Na3La9O3(BO3)8:Eu3+ (NLBO:Eu) and Na3La9O3(BO3)8:Tb3+ (NLBO:Tb) were prepared by solid-state reactions. The photoluminescence characteristics under UV excitation were investigated. The dominated emission of Eu3+ corresponding to the electric dipole transition 5D07F2 is located at 613 nm and bright green luminescence of NLBO:Tb attributed to the transition 5D47F5 is centered at 544 nm. The concentration dependence of the emission intensity showed that the optimum doping concentration of Eu and Tb is 30% and 10%, respectively.  相似文献   

18.
Powders of calcium yttrium silicate, Ca3Y2(Si3O9)2, containing 0.1-3% Tb3+ were prepared using a sol-gel method and characterized with XRD, IR, UV-vis and UV-VUV spectroscopies at room temperature and 10 K. Structural analysis revealed pure monoclinic phase of Ca3Y2(Si3O9)2 after heat-treatment at 1000 °C. Infrared spectroscopy showed that between 800 and 900 °C a short-range structural organization of the components proceeded, yet without crystallization. A strong emission of Tb3+ had been observed both in the green part of the spectrum due to the 5D47FJ transitions and in the blue-violet region owing to the 5D37FJ radiative relaxation. The color of the light could be tuned from yellowish-green to bluish-white both by means of the dopant content and the temperature of synthesis. Efficient luminescence of Tb3+-doped Ca3Y2(Si3O9)2 phosphors could also be obtained upon stimulation with vacuum ultraviolet synchrotron radiation demonstrating that an energy transfer from the host to the Tb3+ ions takes place.  相似文献   

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