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1.
马明星  朱达川  涂铭旌 《物理学报》2009,58(8):5826-5830
采用化学共沉淀法一次煅烧工艺合成了BaAl2Si2O8:Eu2+蓝色荧光粉.用X射线衍射仪和荧光分光光度计等对BaAl2Si2O8:Eu2+蓝色荧光粉的相结构、发光性能进行了测试.结果表明:化学共沉淀法一次煅烧工艺合成的BaAl2Si2O8:Eu2+蓝色荧光粉为单相;其激发光谱分布在240—410 nm的波长范围,峰值位于320 nm处,可以被InGaN管芯产生的350—410 nm辐射有效激发;在365 nm近紫外光的激发下,测得其发射光谱是位于465 nm附近的宽带峰.BaAl2Si2O8:Eu2+蓝色荧光粉的发光强度随Eu2+浓度的增大逐渐加强,当Eu2+掺杂的摩尔分数为3.5%时,发光强度达到最大值,而后随掺杂浓度的增加而减小,发生浓度猝灭;根据Dexter能量共振理论,该浓度猝灭是由于Eu2+的离子间交换相互作用引起的. 关键词: 2Si2O8:Eu2+')" href="#">BaAl2Si2O8:Eu2+ 发光特性 蓝色荧光粉 化学共沉淀法  相似文献   

2.
采用凝胶-燃烧法合成了Ca3Sc2Si3O12 ∶Ce绿色LED用荧光粉,用X射线粉末衍射(XRD)、扫描电镜(SEM)、荧光光谱仪等对合成产物进行了分析和表征.结果表明:通过添加H3BO3做助熔剂,制得的荧光粉晶相纯正,颗粒形貌均呈现为较规则的类球形,而且所得荧光粉的粒径均小于1 μm.发射光谱呈现为一宽带,发射主峰位于505 nm,该宽峰对应于Ce3+关键词: 白光LED 荧光粉 3Sc2Si3O12 ∶Ce')" href="#">Ca3Sc2Si3O12 ∶Ce 发光  相似文献   

3.
李斌  孟小康  冯珊  鄢维  孙夏薇  谭劲 《发光学报》2014,35(4):425-430
在N2气氛下,以Si3N4、SrCO3和Eu2O3为原料,采用自还原高温固相合成法制备了Sr0.97Si2N2O2:0.03Eu2+荧光粉。在近紫外光激发下,该荧光粉发出明亮的黄绿光,发射峰位于533 nm处。采用XRD分析了不同助熔剂(NH4F,NH4Cl,Li2CO3,H3BO3)条件下的荧光粉晶相发育情况。通过SEM和荧光光谱研究了不同助熔剂对Sr0.97Si2N2O2:0.03Eu2+晶粒形貌及发光性能的影响。结果表明,随着助熔剂的添加,荧光粉团聚现象缓解、结晶度增强、分散性提高,且不同程度地提高了荧光粉的发光强度,其中以NH4Cl的添加效果最佳。  相似文献   

4.
任艳东  吕树臣 《物理学报》2011,60(8):87804-087804
采用化学共沉淀法制备了Eu3+掺杂摩尔分数不同、煅烧温度不同的SrWO4:Eu3+系列发光粉体, 所制备的粉体均具有Eu3+特征的强室温红光荧光发射. 通过调节煅烧温度和掺杂摩尔分数来调控近紫外和蓝光吸收强度, 进而调控用395 nm的近紫外光和465 nm的蓝光激发样品所得红光发光强度. 研究结果表明, 所制备的SrWO4:Eu3+红光荧光粉可以被紫外和蓝光发光二极管有效激 关键词: 稀土掺杂 4:Eu3+')" href="#">SrWO4:Eu3+ 光致发光 白光发光二极管  相似文献   

5.
采用高温固相法合成了BaZnP2O7:Eu2+,Mn2+荧光粉,并对其发光性质及Eu2+对Mn2+的能量传递机理进行了研究.Eu2+和Mn2+在380 nm和670nm的发射峰分别由Eu2+的5d—4f跃迁和Mn2+4T1(4关键词: 磷酸盐 2+')" href="#">Eu2+ 2+')" href="#">Mn2+ 能量传递  相似文献   

6.
曹仕秀  韩涛  涂铭旌 《物理学报》2011,60(12):127802-127802
采用化学共沉淀法制备了Ca2-xMgSi2O7:xEu2+绿色荧光粉.用X射线衍射仪、荧光分光光度计及光色综合测试系统对Ca2-xMgSi2O7:xEu2+绿色荧光粉的相结构、发光性能进行了测试.结果表明:其激发光谱分布在300–480 nm波长范围,谱峰位于389,430 nm处,可以被InGaN管芯产生的360–480 nm辐射有效激发;在波长为430 nm蓝光激发下,其发射光谱谱峰位于531 nm处.Ca2-xMgSi2O7:xEu2+绿色荧光粉的发光强度随Eu2+掺杂量的增加而增强,当Eu2+掺杂量x为0.04时,发光强度达到最大值,而后开始降低,发生浓度猝灭.根据Dexter能量共振理论,浓度猝灭是由电偶极-电偶极相互作用引起的. 关键词: 2MgSi2O7∶Eu2+')" href="#">Ca2MgSi2O7∶Eu2+ 绿色荧光粉 发光特性 白光发光二极管  相似文献   

7.
采用高温固相法合成发光样品Y2O3:Eu3+0.01和Y2O3:Eu3+0.01,Dy3+0.01.X射线衍射分析(XRD)表明样品保持Y2O3晶格结构,掺入的Eu3+和Dy3+对Y2关键词: 长余辉 2O3')" href="#">Y2O3 稀土掺杂 陷阱  相似文献   

8.
齐智坚  黄维刚 《物理学报》2013,62(19):197801-197801
采用溶胶-凝胶法制备了可用于白光LED的新型Ca3Si3O9:Dy3+荧光粉, 通过对样品的X 射线衍射谱及光致发光光谱的测试和表征, 研究了Ca3Si3O9:Dy3+的物相结构和发光性能. 结果显示, Ca3Si3O9:Dy3+的发射光谱是由位于483 nm和577 nm处的主峰构成的双峰谱线, 激发光谱为多峰宽谱, 谱峰位于290–480 nm范围内. Dy3+掺杂浓度对Ca3Si3O9:Dy3+发光性能有明显的影响, 随着Dy3+浓度的增大, Ca3Si3O9:Dy3+的发光强度和黄、蓝光发射强度比 (Y/B) 均呈现先增大后减小的规律, 最大发光强度值对应的Dy3+浓度为1 mol%. 电荷补偿剂Li+能提高Ca3Si3O9:Dy3+的发光强度, 特别当Li+浓度为2–4 mol%时, 荧光粉的蓝光发射强度显著增大. 关键词: 白光LED 溶胶-凝胶法 3Si3O9:Dy3+')" href="#">Ca3Si3O9:Dy3+ 发光特性  相似文献   

9.
吴疆  张萍  蒋春东  邱泽忠 《发光学报》2014,35(7):772-776
采用高温固相法在1 400 ℃下经二次煅烧合成了橙红色荧光粉Ca3Y2-xSi3O12:xSm3+,研究了Sm3+离子掺杂浓度及助熔剂对荧光粉发光性能的影响。XRD结果显示,所合成的荧光粉的主晶相为Ca3Y2Si3O12。荧光光谱分析表明,Ca3Y2Si3O12:Sm3+硅酸盐荧光粉可以在320~500 nm范围内得到有效激发,并发射橙红光。在402 nm激发下,样品发射光谱中的主发射峰分别位于562 nm(4G5/26H5/2)、598 nm(4G5/26H7/2)和646 nm(4G5/26H9/2),其中598 nm处峰值最大。改变Sm3+离子掺杂浓度发现:荧光粉发光强度先增大后减小,最佳Sm3+掺杂量x(Sm3+)为5%,浓度猝灭机理为离子间的相互作用。讨论了几种助熔剂的影响,NH4F、CaF2和NaCl均降低荧光粉的发光强度,只有H3BO3能够显著增强样品的发光,其最佳掺杂质量分数为1%。  相似文献   

10.
采用高温固相法成功合成了一种可用于白光LED的Ca2Li2BiV3O12∶Eu3+新型红色荧光粉,使用X射线衍射仪和荧光分光光度计对合成样品进行了表征,研究了合成温度和Eu3+含量对合成样品相组成和发光性能的影响。结果表明,采用高温固相法在650~700 ℃能合成纯度较高、结晶度好的Ca2Li2BiV3O12∶Eu3+荧光粉,合成样品激发带覆盖200~400 nm,发射光谱的线状发射峰可归属于Eu3+5D07FJ(J= 1, 2, 3,4)特征锐线发射,Eu3+摩尔分数为14%时荧光粉的发光强度最大。  相似文献   

11.
Phosphor material BaAl2O4:Eu2+, Dy3+ with varying compositions of Sr substitution were prepared by the solid-state synthesis method. The phosphor compositions were characterized for their phase and crystallinity by XRD, SEM and TEM. Photoluminescence (PL) properties were investigated measuring PL and decay time for varying Ba/Sr compositions. The PL results show the blue shift in the luminescence properties in Sr substituted BaAl2O4:Eu2+, Dy3+ compared to parent BaAl2O4:Eu2+, Dy3+. It is probably due to the influence of 5d electron states of Eu2+ in the crystal field because of atomic size variation causing crystal defects. Dy3+ ion doping in the phosphor generates deep traps, which results in long afterglow phosphorescence.  相似文献   

12.
Sr2+ doped BaAl2Si2O8:Eu2+ phosphor was synthesized by chemical co-precipitation method. With the increase of Sr2+ concentration, the phase structure of (Ba0.965 ? xSrxEu0.035)Al2Si2O8 changes from hexagonal phase to monoclinic phase owing to large activation energy in SrAl2Si2O8 system. (Ba0.965 ? xSrxEu0.035)Al2Si2O8 phosphor exhibits a broad blue band peaking at 425 nm due to the 4f65d–4f7(8S7/2) transition of Eu2+ ions. The emission intensity increases, accompanied by the blue shift of emission maximum from 459 to 417 nm with the Sr2+ doping concentration increasing. The optimal concentration of Sr2+ ion is 40%, and the phosphor shows high color stability in CIE chromaticity diagram. The result indicates that Sr2+ doped phosphor not only can enhance the relative intensity but also can adjust the chromaticity coordinate.  相似文献   

13.
The excitation spectra of M (M=Si4+, Ti4+) and Eu3+ co-doped BaZr(BO3)2, BaZrO3:Eu and La2Zr2O7:Eu in the vacuum ultraviolet (VUV) regions of 110-300 nm are investigated and the host-lattice absorption are characterized. The result indicated that BaZr(BO3)2:Eu3+ phosphor has a strong absorption under the VUV excitation, and in the host-lattice excitation, the strong band at 130-160 nm could be due to the BO3 atomic groups; the band at 160-180 nm is related to the excitation of Ba-O; 180-200 nm corresponds to the charge transfer (CT) transition of Zr-O. The band at 200-235 nm due to the CT band of Eu3+-O2− and a bond valence study explained the observed weak CT band of Eu3+-O2− in the excitation spectra of BaZr(BO3)2:Eu3+. The emission results show that Si4+ can sensitize luminescence in the host of BaZr(BO3)2:Eu but Ti4+ has no improvement effect on luminescence.  相似文献   

14.
A blue emitting phosphor of the triclinic BaCa2Si3O9:Eu2+ was prepared by the combustion-assisted synthesis method and an efficient blue emission ranging from the ultraviolet to visible was observed. The luminescence and crystallinity were investigated using luminescence spectrometry and X-ray diffractometry (XRD), respectively. The emission spectrum shows a single intensive band centered at 445 nm, which corresponds to the 4f65d1→4f7 transition of Eu2+. The excitation spectrum is a broad extending from 260 to 450 nm, which matches the emission of ultraviolet light-emitting diodes (UV-LEDs). The critical quenching concentration of Eu2+ in BaCa2Si3O9:Eu2+ phosphor is about 0.05 mol. The corresponding concentration quenching mechanism is verified to be a dipole-dipole interaction. The CIE of the optimized sample Ba0.95Ca2Si3O9:Eu0.052+ was (x, y)=(0.164, 0.111). The result indicates that BaCa2Si3O9:Eu2+ can be potentially useful as a UV radiation-converting phosphor for white light-emitting diodes (LEDs).  相似文献   

15.
谢伟  王银海  全军  邹长伟  梁枫  邵乐喜 《物理学报》2014,63(1):16101-016101
采用高温固相法制备了发光样品Y1.98O3:Eu3+0.01,Dy3+0.01.采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、荧光光谱仪、单光子计数器测试了不同含量的H3BO3对Y1.98O3:Eu3+0.01,Dy3+0.01物相结构、颗粒形貌、发光性能、余辉性能的影响.结果表明当H3BO3含量低于8%(mol)时,样品可保持Y2O3晶格结构,且样品颗粒随H3BO3的含量增加逐渐增大.样品光致发光由Eu3+离子电子的5D0→7FJ跃迁所致,主峰位于612 nm,且发光强度随H3BO3含量的增加呈线性增强.随着H3BO3含量的增加,样品余辉衰减时间逐渐增加,热释光谱分析表明H3BO3的加入增加了基质陷阱能级的深度与浓度,故而导致样品长余辉性能的变化.  相似文献   

16.
In this paper, the Sr3Y2 (BO3)4:Eu3+ phosphor was synthesized by high temperature solid-state reaction method and the luminescence characteristics were investigated. The emission spectrum exhibits one strong red emission at 613nm corresponding to the electric dipole 5D0--7F2 transition of Eu3+ under 365nm excitation, this is because Eu3+ substituted for Y3+ occupied the non-centrosymmetric position in the crystal structure of Sr3Y2 (BO3)4. The excitation spectrum indicates that the phosphor can be effectively excited by ultraviolet (254nm, 365nm and 400nm) and blue (470nm) light. The effect of Eu3+ concentration on the red emission of Sr3Y2 (BO3)4:Eu3+ was measured, the result shows that the emission intensities increase with increasing Eu3+ concentration, then decrease. The Commission Internationale del'Eclairage chromaticity (x, y) of Sr3Y2(BO3)4:Eu3+ phosphor is (0.640,0.355) at 15 mol% Eu3+.  相似文献   

17.
路芳  张兴华  卢遵铭  徐学文  唐成春 《物理学报》2012,61(14):144209-144209
利用固相反应法制备了Sr和Ba替代的Ca2.955-xMxSi2O7: 0.045Eu2+ (M= Sr, Ba, x= 0.1-0.5)系列荧光粉, 利用较大离子半径的Sr和Ba元素替代Eu掺杂Ca2.955-xMxSi2O7 中的Ca元素,研究Sr和Ba替代对样品结构和发光特性的影响. X射线衍射测试结果表明,少量Sr和Ba替代不会改变基质的晶体结构, 样品仍然为单斜晶系.未替代前, Ca2.955Si2O7: 0.045Eu2+ 样品的发射峰在574 nm左右,随着Sr含量的增加,样品的发射峰发生蓝移; 而Ba含量在x= 0.1-0.4时不会引起发射峰位置的移动, 但x= 0.5样品的发射峰发生蓝移.同等含量的Sr和Ba部分替代样品中的Ca元素, Ba替代样品的光谱强度较强.  相似文献   

18.
A series of phosphors Ca2BO3Cl:Eu3+ were synthesized by using a high-temperature solid-state reaction technique, and their UV–vis luminescence properties were investigated. The f–f transitions of Eu3+ in the host lattice were assigned and discussed. The excitation and emission spectra indicate that this phosphor can be effectively excited by ultraviolet (394 nm), and exhibit reddish orange emission corresponding to the 5D07FJ (J=0, 1, 2) transitions of Eu3+. The influence of the doping concentration and charge compensators on the relative emission intensity of Eu3+ was investigated, and the optimum doping concentration is 0.04. The critical distance Rc was estimated to be 17.1 Å in terms of the concentration quenching data. The present study suggests that Ca2BO3Cl:Eu3+ can be a potential candidate as an UV-convertible phosphor for white light-emitting diodes (LEDs).  相似文献   

19.
BaMg2Al6Si9O30:Eu2+ phosphors are synthesized by the solid-state reaction method and their photoluminescence (PL) properties are investigated. The ultraviolet emission originates from Eu2+(I) substituting for Ba2+ sites, whereas the blue emission is attributed to Eu2+(II) substituting for Mg2+ sites. With increasing Eu2+ doping concentrations, the blue emission band shifts to long wavelength and the PL intensity ratio of blue to ultraviolet emission increases. Energy transfer between the two different Eu2+ ions is analyzed by photoluminescence excitation and emission spectra, and lifetimes. Results indicate that the emission spectra can be tuned by changing Eu2+ contents. We have also demonstrated that BaMg2Al6Si9O30:Eu2+ phosphor is a kind of potential phosphor for fluorescent lamps.  相似文献   

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