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1.
A phosphor, Ba0.97Al2Si2O8∶Eu2+, was synthesized by high temperature solid-phase method at different temperatures. The samples were characterized by TG/DTA, XRD and fluorescence spectroscopy. The results show that the main phase for host of these luminescence materials is barium feldspar BaAl2Si2O8∶Eu2+ and there is a transition from hexagonal crystal system to monoclinic crystal system in the process of the sintering of barium feldspar. The luminescent phenomen of barium feldspar with hexagonal structure can not be observed under the excitation of ultraviolet lamp of 365 nm while the barium feldspar with monoclinic structure has excellent luminescence properties. The excitation spectra of all these samples show broad band spectra ranging from 250~390 nm with peak at λex of 357 nm,which indicates that these samples can be effectively excited by near ultraviolet ; the emission spectra range from 380~600 nm with peak at λem of 433 nm. The luminescent intensity increases then decreases with the concentration of doping Eu2+ ions. When the concentration of dopants is 2.5mol%, the luminescent intensity reaches the maximum value. When the concentration of Eu2+ ions changes from 0.5mol% to 2.5mol%, the emission peak has a red shift from 427 nm to 440 nm.  相似文献   

2.
Silicate orange yellow phosphor used in white-light LED was prepared by microwave method. The structure and optical properties of phosphor were studied. Sr3SiO5∶Eu2+ phosphor synthesized by microwave method is tetragonal structure of Sr3SiO5 with uniform particle distribution. Luminescence spectrum is a broad band spectrum peaking at 575 nm. The peak of excitation is at 532 nm and phosphor can be excited by blue LED. The warm white light was obtained combined phosphor and blue LED. The CIE chromaticity coordinates and correlated color temperature of white light is (x=0.394, y=0.341) and 3 239 K respectively.  相似文献   

3.
采用共沉淀法及1 200 ℃后续煅烧4 h,成功制备了CaSb2O6:Bi3+,Eu3+荧光粉,并对其结构及发光性能进行了研究。所制备荧光粉颗粒为六边形类圆饼状,平均尺寸在100~600 nm之间。对CaSb2O6:Bi3+,Eu3+发光的机理分析表明,Bi3+对Eu3+的发光存在高效的敏化与能量传递。当Bi3+和Eu3+的掺杂浓度分别为0.5%和8%,Eu3+位于580 nm(5D07F0 )处的荧光发射显著增强,Bi3+,Eu3+共掺样品的荧光强度是CaSb2O6:Eu3+的10倍左右。调节Bi3+/Eu3+离子掺杂比,色坐标呈现了从蓝、白光到红光的变化,表明该荧光粉可分别作为蓝或红色荧光粉使用,甚至可实现从蓝、白光到红光的自由调控,这为白光LED荧光粉的发展提供了参考。  相似文献   

4.
在600℃温度下,采用液相燃烧法合成了Sr2+、Eu2+和Mn2+三掺的BaMgAl10O17(BAM)蓝绿荧光粉。用XRD、SEM和荧光光谱仪分别分析和表征该荧光粉的物相、形貌和光致发光性能。结果表明,液相燃烧法合成BAM的温度明显低于传统的高温固相合成法;合成的纳米棒均匀、无团聚现象;荧光光谱仪分析表明Eu2+、Mn2+离子间存在能量传递,且Sr2+能有效提高BAM的发光强度,约为固相法制备荧光强度的1.8倍。BAM:0.1Eu2+,0.04Mn2+,0.05Sr2+色坐标为(0.146,0.250),属于蓝绿光。  相似文献   

5.
稀土红色荧光粉SrZnO2∶Eu3+的发光性能   总被引:4,自引:0,他引:4  
A series of novel luminescent materials, SrZnO2∶M (M=Eu3+, or Eu3+ + Li+) have been synthesized by high-temperature solid-state reaction. The structure and luminescence properties of SrZnO2∶Eu3+ phosphor were studied through XRD, photoluminescence and Raman spectroscopy. The excitation spectra show a broad intense band and a number of small peaks corresponding to the inner 4f-shell excitations of Eu3+ (the strongest one is at 395 nm for 7F0-5L6). After SrZnO2∶Eu3+ phosphor was co-doped with Li+ ions, its charge transfer band extended to longer wavelengths. This resulted in increase of luminescent quantum efficiency of the sample. SrZnO2∶Eu3+,Li+ phosphor can be efficiently excited by longer UV. From the fluorescence spectrum of SrZnO2∶Eu3+ phosphor, apart from transition emissions of 5D07FJ (J=0~4), the transition emissions from 5D17FJ (J=0~2) have been observed. For the SrZnO2∶Eu3+ phosphor, under excitation of UV, the dominant emission is at about 612 nm, due to the 5D07F2 hypersensitive transition. The incorporation of Li+ ions greatly enhanced the luminescence intensity and made emission peak from 5D07F2 transition red-shifted.  相似文献   

6.
采用水热-均匀共沉淀法制备了纳米SrAl2O4∶Eu2+,Dy3+长余辉发光材料。通过XRD、TEM、荧光光谱、热释光谱对其结构和性能进行分析。XRD结果表明所制备的SrAl2O4∶Eu2+,Dy3+纳米发光材料为单相,属单斜晶系。TEM测试表明纳米SrAl2O4∶Eu2+,Dy3+发光材料为规则的球状粒子,粒径为50~80 nm,且分散性良好。激发和发射光谱测试表明,样品的激发光谱是峰值在356 nm的连续宽带谱,发射光谱是峰值位于512 nm的宽带谱,与SrAl2O4∶Eu2+,Dy3+粗晶材料相比,激发和发射光谱都出现了“蓝移”现象。样品的热释光峰值位于358 K,适合于产生长余辉。  相似文献   

7.
The spherical Y2O3∶Eu3+ luminescent particles with size of 0.5~3 μm and smooth surface were synthesized by hydrothermal method. The resulted Y2O3∶Eu3+ precursors and the calcined particles were characterized by differential thermal analysis (DTA) and thermogravimetric (TG) analysis, X-ray diffraction (XRD), Fourier-transform IR spectroscopy (FTIR), scanning electron microscopy (SEM) and photoluminescence spectra (PL). FTIR, TG-DTA, XRD measurements show that the precursors are crystal with hydroxyl and carbonate group, and the pure cubic yttria is obtained after annealing above 700 ℃. The SEM images indicate that the Y2O3∶Eu3+ particles are in spherical shape and with smooth surface. PL analysis shows that the particles present characteristic red emission of Eu3+.  相似文献   

8.
对SrAl2O4∶Eu2+,Dy3+长余辉材料在100~500 K温度之间的发光性能进行研究。实验结果表明,材料的荧光及余辉强度在特定温度区间内呈线性变化,在热释峰所在温度范围具有较好的发光性能。其变化规律表明SrAl2O4∶Eu2+,Dy3+长余辉材料内部陷阱中电子的释放包括瞬时释放和延时释放两种类型,其中电子瞬时释放进而跃迁发光是荧光的组成部分,延时释放产生的跃迁则导致余辉发光。陷阱和电子的复合与陷阱中电子释放过程均随温度升高而增强,但温度过高时会发生热猝灭。材料荧光强度与余辉强度在特定温度区间内随温度呈线性变化关系表明其可以作为一种光纤温度传感材料。  相似文献   

9.
共沉淀-熔盐法制备BaMoO4∶Eu3+及其发光性能研究   总被引:1,自引:0,他引:1  
以KCl-NaCl为熔盐,采用共沉淀前躯体-熔盐辅助焙烧法合成了红色发光材料BaMoO4∶Eu3+。运用X射线粉末衍射(XRD)、扫描电子显微镜(SEM)及荧光光谱(PL)等测试手段,研究了熔盐辅助焙烧温度对粉体相结构、形貌和发光性能的影响,并对比了直接采用共沉淀法合成BaMoO4∶Eu3+的结构与发光性能。结果表明:采用两种方法制备的BaMoO4∶Eu3+均是纯相,粒径随温度升高而增大。当KCl-NaCl复合熔盐焙烧温度大于700 ℃,BaMoO4晶粒在熔盐中实现了(111)面取向生长,得到均一的尖晶石型BaMoO4∶Eu3+微晶。光谱研究表明:共沉淀前躯体-熔盐辅助焙烧法合成样品在615 nm处的Eu3+5D0-7F2发射明显得到加强,样品发出明亮的红色发射光。  相似文献   

10.
SrAl2O4∶Eu2+,Dy3+纳米长余辉发光材料的制备与表征   总被引:7,自引:0,他引:7  
采用溶胶-凝胶法制备了SrAl2O4∶Eu2+,Dy3+ 纳米长余辉发光材料,研究了pH值、反应温度和络合剂等对溶胶-凝胶形成的影响,研究了灼烧温度对SrAl2O4∶Eu2+,Dy3+ 晶相、颗粒尺度和发光性能的影响。利用XRD, SEM,光谱分析等手段对产物进行了结构和性能分析。实验结果表明,在800 ℃时SrAl2O4晶相开始形成但没有发光,而在1 100 ℃烧结的样品则具有很好的发光性能。样品平均晶粒尺寸随灼烧温度升高而增加,平均晶粒尺寸为20~40 nm。样品的激发光谱是峰值在240,330,378和425 nm的连续宽带谱,发光光谱是峰值在523nm的宽带谱,与SrAl2O4∶Eu2+,Dy3+ 粗晶材料相比,发光光谱发生了“红移”现象。样品的热释光峰值位于157 ℃,与SrAl2O4∶Eu2+,Dy3+ 粗晶材料相比,峰值向低温移动了13℃。  相似文献   

11.
以α-Si3N4,SrCO3,Eu2O3为原料,采用碳热还原氮化法制备了Sr2Si5N8:Eu2+荧光粉.研究了材料的结构与光谱特性,分析了影响材料发光性能的工艺因素.结果表明,石墨粉含量和助熔剂的用量对Sr2Si5N8相的形成和发光性能有重要影响.当nc/nSr=1.5,助熔剂用量为4wt%时,合成样品的主晶相为正交晶系Sr2Si5N8,在400~550 nm可见光激发下,可发射峰值波长位于 609nm荧光.激发带的位置与Eu2+离子浓度无关,为400~550 nm之间的宽带激发;但发射强度随Eu2+离子浓度的增加而增加.Eu2+离子浓度达到5mol%时发射强度达最大值,在Eu2+离子浓度为2mol%~5mol%之间,观察到发射峰的红移现象.  相似文献   

12.
一维Y2O3∶Eu3+纳米发光材料的制备与表征   总被引:1,自引:0,他引:1  
One-dimensional Y2O3∶Eu3+ luminescence nanomaterials were prepared by hydrothermal method without template, and their properties were characterized. XRD patterns show that the precursors are hexagonal phase Y(OH)3 crystals, and the samples are cubic Y2O3 after heat-treatment. SEM images indicate that the one-dimensional material with a diameter of 100 nm and length of micrometer scale can be obtained by this hydrothermal method. Photoluminescence properties show that the position and intensity of the precursors are different with that of the heat-treated samples resulted from the different hosts.  相似文献   

13.
通过溶胶-凝胶方法制备了稀土离子Eu3+和Ga3+共掺杂的SiO2材料;利用IR、XRD等研究了材料的结构,结果表明材料属于非晶态,800 ℃退火后样品的主要结构仍为SiO2的网状结构。400 ℃退火的样品在393 nm激发下发射光谱显示了Eu3+的特征发射光谱,产生3条明显谱带,分别是576 nm(5D0-7F  相似文献   

14.
王飞  田一光  张乔 《无机化学学报》2019,35(6):1085-1092
通过高温固相反应在弱还原气氛下制备了Sr0.955Al2-xBxSi2O8:0.025Eu2+x=0~0.9)一系列荧光粉,研究了B(Ⅲ)取代基质晶格中的Al(Ⅲ)对荧光粉晶体结构和Eu2+发光性能的影响。B(Ⅲ)以类质同相取代基质晶格中Al(Ⅲ),形成了连续固溶体。随着B(Ⅲ)取代量的增加,荧光粉的晶胞参数(a、b、c)和晶胞体积(V)呈线性递减,而晶胞参数(β)呈线性递增。荧光粉的激发光谱为位于225~400 nm的宽峰,表观峰值位于350 nm,激发峰的半高宽(FWHM)随着B(Ⅲ)取代量的增加,从90 nm减小到102 nm。发射光谱位于370~600 nm的宽峰,可拟合为409和447 nm两个峰,表观峰值位于409 nm。随着B(Ⅲ)取代量的增加,2个拟合峰位均出现蓝移且2个峰强度比呈线性递减。根据试样荧光光谱,通过Van Uitert经验公式计算得出SrAl2Si2O8:Eu2+中Sr2+的配位数为9。随着B(Ⅲ)取代Al(Ⅲ)进入基质晶格,造成发光中心Eu与配体O距离增加,使得Eu2+所处的晶体场强度减小,发光中心Eu2+的5d能级分裂减小,造成Eu2+最低发射能级重心上移,2个拟合谱峰峰位均呈线性蓝移。  相似文献   

15.
采用溶胶凝胶法制得高纯的B2O3-CaO∶Eu3+荧光粉。用XRD、IR对不同退火温度下所得样品的结构进行表征,结果发现随退火温度的变化,能形成不同结构的硼酸盐基质。通过对以不同结构硼酸盐为基质荧光粉的激发、发射谱图及荧光衰减曲线的分析,探讨了材料的发光性能和发光机理。结果表明,在不同结构硼酸盐基质中,Eu3+都处于无反演对称中心格位,以(5D0F2)电偶极跃迁为主,所以材料主要发红光;且900℃退火所得高纯相的CaB2O4基质最有利于发光、对应的荧光衰减时间最长,这都因在此荧光粉中Eu3+更易取代Ca2+,并形成相对较多的p-n结和陷阱所致。  相似文献   

16.
The barium titano-silicate phosphors doped with Eu3+ were synthesized by high temperature solid state reaction. The structures of as-synthesized samples were characterized by powder XRD. The maximum peaks of emission spectra of Ba2TiSi2O8 and Ba2TiSi2O8∶Eu3+ were respectively located at 450 and 618 nm, coming from the transitions of charge-transfer bands of Ti4+-O2- and forced electric-dipole transition 5D0-7F2 of Eu3+. The luminous mechanisms of Ba2TiSi2O8 and Ba2TiSi2O8∶Eu3+ were suggested. The effects of concentration of Eu3+ on the luminous performance of Ba2TiSi2O8∶Eu3+ were also studied and the results showed that the optimum concentration of Eu3+ was 0.12 mol per mole of matrix.  相似文献   

17.
采用高温固相法合成了系列单相Ca(1-x-y)Al2O4:Eu2+x,Nd3+y(0≤x≤0.045,0≤y≤0.0037)粉末样品,并表征了其发光特性.研究结果表明,样品的发射光谱为最大发射峰位于440nm的宽带谱,属于Eu2+的4f65d→4f7跃迁.通过对Eu2+,Nd3+掺杂量与样品发光性能之间关系的研究发现,Eu2+和Nd3+最佳掺杂量分别为x=0.00125和y=0.0025,并且Nd3+对改善蓝色长余辉材料CaAl4:Eu2+的余辉性能具有重要的作用.在最佳掺杂条件下,样品的余辉时间可达1000min,初始亮度大于1200mcd/m2,60min后发光粉的亮度仍然在10mcd/m2以上.利用正电子湮灭技术和热释光技术,研究了Eu2+和Nd3+对CaAl2O4:Eu2+,Nd3+材料的发光性能的影响.  相似文献   

18.
采用凝胶-燃烧法制备了稀土Eu3+掺杂的LaMgAl11O19红色荧光粉的前驱粉末, 在低于700℃退火处理时, 得到非晶态样品, 而高于850℃退火处理后为单一六方相结构LaMgAl11O19:Eu3+样品. SEM结果表明, 该法制备的样品为颗粒分布均匀, 粒径在200~400 nm之间的超细粉末. 通过激发光谱和发射光谱研究了Eu3+在LaMgAl11O19基质中的发光性能, 结果显示, 非晶态和晶态La1-xMgAl11O19:x Eu3+样品都可发光, 在613 nm波长光的监测下所得荧光粉的激发光谱为一宽带和系列锐峰, 其最强激发峰出现在蓝光465 nm处, 次强峰为394 nm, 表明该荧光粉与广泛使用的紫外和蓝光LED芯片的输出波长相匹配. 在465 nm波长光的激发下观察到超细LaMgAl11O19粉末中Eu3+的613 nm (5D07F2)强的特征发射, 且随着粉末逐渐成相5D07F2跃迁明显增强, 说明LaMgAl11O19:Eu3+超细粉末可作为白光LED的红色补偿荧光粉.  相似文献   

19.
以B2O3为助熔剂,在1 350 ℃、还原性气氛下成功制备了SrAl2O4单相粉末样品。用同样的方法制备了系列单相Sr1-x-yAl2O4:Eu2+x,Dy3+y·nB2O3(0.005≤x≤0.07, 0.01≤y≤0.05,0.05≤n≤0.25)样品并表征了其长余辉发光特性。结果表明,最佳的Eu2+含量为0.02。辅助激活离子Dy3+在Sr0.98Al2O4:Eu2+0.02中的掺杂在一定范围内可以显著提高亮度和余辉时间,最佳Dy3+含量为0.03。研究不同B2O3含量对Sr0.95Al2O4:Eu2+0.02,Dy3+0.03发光性能的影响,结果说明最佳的B2O3含量为n=0.1,余辉肉眼可见(≥0.32 mcd·m-2)时间达4 000 min。利用正电子湮灭技术和热释光技术,研究和讨论了B2O3对Sr0.95Al2O4:Eu2+0.02,Dy3+0.03的发光和余辉性能的影响,结果表明B2O3的添加有助于Dy3+在晶格中形成深度合适、有益于余辉的空位缺陷。  相似文献   

20.
本文介绍了一种新颖的方法合成碱土硅酸盐长余辉发光材料Sr3MgSi2O8:Eu2+,Dy3+。采用正硅酸乙酯(TEOS)和无机粉末在乙醇体系中,通过冰醋酸调整溶液体系pH值控制正硅酸乙酯(TEOS)的水解。前驱体形貌,晶体结构和光谱特征分别通过透射电镜(TEM),X射线粉末衍射仪(XRD)和荧光分光光度计表征。通过透射电镜照片可观察到前驱体具有核壳结构和准球形的形貌。与高温固相法相比,纳米包覆的方法具有较低的合成温度,并且具有较好的发光强度和余辉性能。  相似文献   

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