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1.
通过高温固相法合成Pr3+不同掺杂浓度的K2LaBr5多晶料,采用垂直坩埚下降法生长出K2LaBr5∶Pr单晶,并对晶体进行一系列加工,得到ø12 mm×5 mm的圆柱透明晶体。该晶体属于正交晶系,晶胞参数为a=1.336 0 nm,b=0.992 7 nm,c=0.846 2 nm,Z=4,晶体密度为3.908 g/cm3,熔点为607 ℃。测试了该晶体的X射线粉末衍射、X射线激发发射光谱、光致发光光谱、透过率等。在紫外光以及X射线的激发下,K2LaBr5∶Pr晶体在480~750 nm波长范围内呈现蓝光(3P13H4)、绿光(3P03H4,3P13H5)、橙光(3P13H6,3P13F2)、红光(3P03F2,3P13F3)、深红光(3P13F4),及紫光(3P03F4)等多个可见波长的光输出,表明该晶体具有优良的发光性能。在X射线的激发下,在360~440 nm范围内还观察到一个宽带4f 5d-4f2发射跃迁。稳态瞬态荧光光谱分析仪测出光致衰减时间为10 μs左右,紫外可见分光光度计则测出晶体在可见光波段的透过率达到88%。  相似文献   

2.
采用高温固相法合成出正交相和三斜相结构的BiNbO4∶Eu3+样品,利用X 射线衍射(XRD)、拉曼光谱、吸收光谱和荧光光谱对样品的结构和光学性能进行了研究。结果表明:900 ℃合成样品为正交相结构α-BiNbO4,而1 200 ℃得到三斜相结构β-BiNbO4。吸收光谱得到α相和β相BiNbO4的光学带隙分别为2.69 eV和2.96 eV,与第一性原理的理论结果2.640 eV和3.032 eV相吻合。Eu3+掺杂诱导二者的光学带隙蓝移至2.89 eV和3.05 eV,有效改变了其光响应范围。荧光光谱表明:Eu3+在两种结构的最强荧光峰均来自5D07F2电偶极跃迁,最强荧光峰分别位于615 nm和611 nm。Eu3+在β-BiNbO4中的荧光强度更高,而且其5D07F25D07F1的荧光强度比值更大。与Eu3+相似,Er3+在β-BiNbO4中具有更高的上转换荧光强度,其强度约是在α-BiNbO4中荧光的近40倍,说明三斜结构BiNbO4更适合做稀土离子的基质材料。  相似文献   

3.
采用共沉淀法合成了Pb2+掺杂CaMoO4∶Dy3+,Eu3+荧光粉,通过X射线衍射仪、荧光分光光度计对荧光粉的物相组成、发光特性以及激活离子间能量传递效率进行了表征及分析。结果表明,掺杂Pb2+的CaMoO4∶Dy3+,Eu3+荧光粉样品没有出现新的衍射峰,说明Pb2+很好地代替Ca2+进入到晶格当中,CaMoO4∶0.05Dy3+,0.15Eu3+,0.15Pb2+荧光粉晶胞参数为a=b=0.548 9 nm, c=1.275 3 nm, Z=2,属于四方晶系,在391 nm波长激发下,484 nm处为Dy3+(4F9/26H15/2)的蓝光特征发射峰,575 nm处为Dy3+(4F9/26H13/2)跃迁产生的黄光发射峰,593 nm处为Eu3+(5D07F1)跃迁产生的橙光发射峰,619 nm处为Eu3+(5D07F2)跃迁产生的红光发射峰。通过计算得出CaMoO4∶Dy3+,Eu3+荧光粉中Dy3+和Eu3+之间临界传递距离为1.542 6 nm,能量传递机理是偶极-四极相互作用,能量传递效率接近60.31%,掺杂金属离子Pb2+的荧光粉样品能量传递效率最高提升至72.40%。所以,掺杂Pb2+能够大幅度提升Dy3+与Eu3+之间能量传递效率和改善荧光粉的发光性能,因此其在白光LED领域具有重要研究意义。  相似文献   

4.
《Journal of Non》2000,270(1-3):137-146
The Ge25Ga5Se70 and Ge30Ga5Se65 pure and Pr3+-doped glasses were prepared by direct synthesis from elements and PrCl3. It was found that up to 1 mol% PrCl3 can be introduced in the Ge25Ga5Se70 and Ge30Ga5Se65 glasses. Both types of glasses with overstoichiometric and substoichiometric content of Se were homogeneous and of black color. The optical energy gap is Eoptg=2.10 eV, and the glass transition temperature is Tg=543 K for Ge25Ga5Se70 and Tg=633 K for Ge30Ga5Se65. The long-wavelength absorption edge is near 14 μm and it corresponds to multiphonon processes. Doping by Pr3+ ions creates absorption bands in transmission spectra, which can be assigned to the electron transitions from the ground 3H4 level to the higher energy levels of Pr3+ ions 3H5, 3H6, 3F2, 3F3 and 3F4, respectively. By excitation with YAG:Nd laser line (1064 nm), two intense luminescence bands (1343 and 1601 nm) were excited. The first band can be ascribed to electron transitions between 1G4 and 3H5 energy levels of Pr3+ ions. Full width at half of maximum (FWHM) of the intensity of luminescence was found to be 70 nm for (Ge25Ga5Se70)1 − x(PrCl3)x and (Ge30Ga5Se65)1 − x(PrCl3)x glasses. The FWHM in selenide glasses is lower than in halide and sulphide glasses. The second luminescence band (1601 nm) can be probably ascribed to the transitions between 3F3 and 3H4 energy levels of Pr3+ ions. The absorption and luminescence spectra of Pr3+ ions in studied glasses are slightly influenced by stoichiometry of glassy matrix. The Raman spectra of studied glasses were deconvoluted and assignment of Raman bands to individual vibration modes of basic structural units was suggested. The structure of studied glasses is mainly formed by corner-sharing and edge-sharing GeSe4 tetrahedra. The vibration modes of Ga-containing structural units were not found, they are apparently overlapping with Ge-containing structural units due to small difference between atomic weights of Ge and Ga. In the glasses with substoichiometry of Se, the Ge–Ge bonds of Ge2Se6 structural units were found. In Se-rich glasses the Se–Se vibration modes were found. In all studied glasses also ‘wrong' bonds between like atoms were found in small amounts. Maximum phonon energy of studied glasses is 320 cm−1.  相似文献   

5.
采用微下拉法成功生长出Sm∶YAG和Sm∶Y3ScAl4O12单晶光纤。XRD结果表明晶体为立方晶系,晶胞参数分别为a=1.199 3 nm和a=1.200 0 nm。测试了室温下单晶光纤的拉曼光谱、吸收光谱、荧光光谱和荧光寿命。Sm∶Y3ScAl4O12最大声子能量为766 cm-1。Sm∶YAG和Sm∶Y3ScAl4O12 在可见波段的最强吸收位于405 nm附近,非常适合InGaN/GaN二极管泵浦。404 nm激发下,最强发射带位于618 nm处, 对应于Sm3+4G5/26H7/2能级跃迁, 测得Sm∶YAG和Sm∶Y3ScAl4O12上能级4G5/2的荧光寿命分别为1.86 ms和1.83 ms。实验结果表明Sm∶YAG和Sm∶Y3ScAl4O12单晶光纤是有潜力的红橙光波段激光增益介质。  相似文献   

6.
双钙钛矿结构化合物具有化学稳定性高、声子能量低、易于稀土离子掺杂和多种可调变的晶体学格位等优点,是一种优良的上转换发光基质材料。本文采用高温固相法在600℃下合成了双钙钛矿结构Rb3GaF6∶Er3+,Yb3+上转换发光材料,并采用X射线粉末衍射仪(XRD)、场发射扫描电镜(SEM)和荧光光谱仪对其成分、结构和发光特性进行系统表征。在980 nm激发下,制备的样品在521和548/561 nm处产生的绿光发射分别归因于Er3+2H11/2-4I15/24S3/2-4I15/2能级上的电子跃迁,同时在656 nm处产生的红光发射对应于Er3+4F9/2-4I15/2能级上的电子跃迁。此外,本文...  相似文献   

7.
利用高温固相反应法制备出Ba3Bi2-x(PO4)4xTb3+(x=0.05,0.1,0.15,0.3,0.4,0.5)绿色荧光粉。通过X射线衍射仪、扫描电子显微镜、积分球式分光光度计和荧光光谱仪等对样品进行了分析。结果表明,所制备的样品均为Ba3Bi2(PO4)4纯相,Ba3Bi1.7(PO4)4∶0.3Tb3+的带隙估计值为4.21 eV。当激发光的波长为377 nm时,样品的发射光谱的波峰位于543 nm、584 nm和619 nm处,分别对应于Tb3+5D47F55D47F45D47F3的能级跃迁。随着Tb3+掺杂浓度的增加,样品的发光强度先增强后减弱,当x=0.3时,发光强度最大。计算表明最近邻离子在Ba3Bi2-x(PO4)4xTb3+荧光粉的浓度猝灭中起主要作用。随着测试温度的升高,发光强度变化不大,表明样品具有优异的热稳定性能。CIE色坐标图表明所制备的样品可以被紫外光有效激发而发出绿光。  相似文献   

8.
利用自牺牲模板法以一种新型稀土层状化合物(La0.95Eu0.05)2(OH)4SO4·2H2O为模板成功合成出(La0.95Eu0.05)F3纳米晶并研究其下转换发光性能。采用X射线衍射仪(XRD)、傅里叶红外变换(FT-IR)、场发射扫描电子显微镜(FE-SEM)及荧光光谱仪对合成产物的物相和荧光性能进行表征。XRD及Rietveld精修结果表明以稀土硝酸盐和硫酸铵为原料在100 ℃、pH值为9.5的条件下反应24 h可得到稀土层状化合物(La0.95Eu0.05)2(OH)4SO4·2H2O模板。自牺牲反应过程中,当模板中稀土离子与氟化铵中氟离子摩尔比为1∶3和1∶5时,在180 ℃下水热反应24 h可成功合成(La0.95Eu0.05)F3纳米晶。荧光光谱分析表明,(La0.95Eu0.05)F3荧光粉在395 nm的紫外光激发下,分别在591 nm(5D07F1跃迁,高强度)、618 nm(5D07F2跃迁,中等强度)和692 nm(5D07F4跃迁,低强度)处显示下转换发射。所得荧光粉的色坐标为(0.52,0.45),橙红光。荧光粉的主发射峰呈现单指数衰减行为,拟合后发现其荧光寿命约为14 ms。  相似文献   

9.
MgO nanocrystals doped with Dy3+ have been synthesized by a combustion method. The synthesized sample is characterized by X-ray diffraction, transmission electron micrograph, Fourier transform infrared, and photoluminescence spectroscopy. The as-prepared MgO nanocrystals appear to be single cubic crystalline phase and the diameter is in the range of 20–25 nm. The hypersensitive transition (4F9/26H13/2 of Dy3+) emission is prominent in the emission spectra resulting from the low-symmetry local site at which Dy3+ ions locate. In addition, the dependence of the luminescence intensity on Dy3+ concentration is also discussed.  相似文献   

10.
采用自主设计改造的温梯炉,成功生长了不同浓度Ho3+、Y3+掺杂的CaF2及SrxCa1-xF2晶体,晶体尺寸约为ϕ15 mm×55 mm,生长周期约为6 d,能够实现7种不同浓度晶体的同步生长,并选取其中的4%(原子数分数)Ho,4%Y∶CaF2晶体进行分析,吸收测试表明,该晶体448 nm和643 nm处吸收峰的吸收截面分别是1.13×10-20 cm2和0.84×10-20 cm2, J-O理论分析得到了晶场强度参数Ωt(t=2、4、6)、辐射跃迁几率、荧光分支比和辐射寿命。在448 nm氙灯激发下,经计算得到该晶体在546 nm、650 nm 和752 nm处的发射截面分别为10.450×10-21 cm2、8.737×10-21 cm2和5.965×10-21 cm2,测得5F45F5能级的寿命分别为33.5 μs和17.7 μs。在640 nm LD泵浦激发下,经计算得到该晶体2 031 nm处发射截面为5.375×10-21 cm2,2 847 nm处发射截面为10.356×10-21 cm2,测得5I75I6 能级的寿命分别为4.37 ms 和1.85 ms。以上结果表明,多孔坩埚温梯法能够大大提高激光晶体稀土离子掺杂浓度筛选的效率,加快新型激光晶体材料的研发速度。  相似文献   

11.
以柠檬酸三钠为结合剂,采用水热法结合高温烧结两步法制备了一系列NaY1-x(WO4)2:xSm3+(x=0、0.005、0.010、0.015、0.020、0.025、0.030)粉末。通过X射线衍射(XRD)、扫描电镜(SEM)、红外光谱(FT-IR)和荧光性能(PL)对粉末的相结构、形貌、成分以及发光性能进行了表征。研究结果表明,所合成粉末为NaY(WO4)2的纯相,属四方晶系白钨矿结构,其形貌为3D花形。在405 nm的光激发下,NaY(WO4)2:Sm3+粉末在600 nm处具有最高的荧光强度,对应于Sm3+4G5/26H7/2磁偶极跃迁,观察到橙红光发射,且Sm3+最佳掺杂摩尔分数为0.015时,粉末显示出最强的荧光发射强度。  相似文献   

12.
GdTaO4和LuTaO4是具有快发光衰减的新型重闪烁体。采用全谱拟合方法拟合了808 nm 激光二极管(LD)激发的M相Nd∶GdTaO4和M′相Nd∶LuTaO4的光致发光谱,给出了它们的跃迁强度参数Akt,p。在808 nm 激光激发下,GdTaO4中Nd3+离子4F3/2能级的上下两个晶场子能级的粒子布居数比例接近1,而在Nd∶LuTaO4中则为1.30、1.41,表明在808 nm激光激发下,Nd3+4F3/2两个晶场子能级间的无辐射弛豫速率与激发速率相近。通过给出的跃迁强度参数Akt,p计算了Judd-Ofelt跃迁强度参数Ωt,计算了Nd3+在GdTaO4、LuTaO4中的2P3/2跃迁几率,表明GdTaO4和LuTaO4中Nd3+的数百纳秒发光跃迁是由高的无辐射跃迁几率导致的快发光衰减。  相似文献   

13.
段欢  崔瑞瑞  邓朝勇 《人工晶体学报》2020,49(12):2302-2307
本文采用高温固相法成功合成了一系列Ba2YAlO5∶0.2Eu3+, xNa+(x=0.01,0.03,0.05,0.10,0.20,0.30)荧光粉,研究了Eu3+,Na+掺杂对晶体结构的影响。使用扫描电子显微镜观察荧光材料的微观形貌,使用荧光光谱仪对荧光粉的激发和发射光学特性进行观测和分析,从理论上研究了浓度猝灭和能量传递现象。在613 nm监测波段下,激发光谱在270~290 nm处出现O2-→Eu3+电荷转移带,395 nm和465 nm处出现峰值,在465 nm处峰值最大,对应于7F05D2跃迁。在465 nm监测波长下,观察到在613 nm处发射峰最强,对应于5D07F2跃迁,钠离子最优掺杂浓度为x=0.03。通过理论计算得出基质中的能量传递在最近邻离子之间。对发光材料进行热稳定性测试和分析,计算得到热猝灭激活能的值为0.058 eV,计算出Ba2YAlO5∶0.2Eu3+, 0.03 Na+荧光粉的色坐标位于(0.61, 0.39),非常接近于国际照明委员会规定的标准色坐标(0.67, 0.33)。  相似文献   

14.
采用坩埚下降法生长出不同摩尔分数Ce3+(1%、2%、4%、6%、8%)掺杂的KCaCl3:Ce单晶。晶体属于正交晶系,晶胞参数为a=0.756 0 nm,b=1.048 2 nm,c=0.726 6 nm。热重分析仪测得熔点为740 ℃,透过率测试显示晶体在可见光波段均具有较好光学透过率。对晶体的光致发光光谱、光致衰减时间、X射线激发发射光谱、透过率等光学性能进行了表征。光致发光光谱显示KCaCl3:Ce晶体在358 nm和378 nm波长左右有宽的发射峰,符合Ce3+的5d12F5/2和5d12F7/2能级跃迁,通过拟合,KCaCl3:Ce晶体的衰减时间在30 ns左右。晶体在X射线激发下均表现出优异的X射线发光性能。  相似文献   

15.
白磷钙石结构化合物合成温度较低,且具有更加丰富可调变的晶体学格位,是一种优良的发光基质材料。本文采用高温固相法在1 250 ℃条件下合成了白磷钙石型发光材料Ca1.8Li0.6La0.6-x(PO4)2xEu3+(x=0、0.01、0.03、0.06、0.09、0.15),并采用X射线粉末衍射仪(XRD)和荧光光谱仪对其结构和发光性能进行系统表征。结果表明,制备荧光粉均为白磷钙石结构,Eu3+的掺杂并未在很大程度上改变其结构。该体系荧光粉发射红光,发射光谱出现了Eu3+的特征发射,最强发射峰位于617 nm处,来源Eu3+5D07F2跃迁。随着Eu3+掺杂浓度的增加,样品的荧光寿命逐渐减小,证明了Eu3+离子间能量传递的存在。  相似文献   

16.
室温下,以N-乙基吡啶碘盐(Epy)I和四水溴化锰(MnBr2·4H2O)为原料合成了一种零维发光材料[(Epy)2][MnBr2I2]。对该配合物进行元素含量分析、红外光谱、单晶X射线衍射、粉末X射线衍射、紫外可见吸收光谱、光致发光光谱及X射线激发发射光谱等测试。单晶X射线衍射结果表明:配合物为单斜晶系,C2/c空间群,中心离子Mn(Ⅱ)为四面体构型,晶胞参数为a=2.825 5(6) nm,b=0.839 71(17) nm,c=1.836 0(4) nm。在332 nm紫外光激发下,配合物发出528 nm的绿光,对应于四面体Mn(Ⅱ)配合物的4T1(G)→6A1特征辐射跃迁,荧光寿命为58.85 μs,荧光量子产率为58.29%。X射线激发光谱表明配合物发光强度较高,具有X射线荧光性能。  相似文献   

17.
A modified method to synthesize the new laser upconversion material Ba2ErCl7 using Er2O3, BaCl2 2H2O and NH4CI is reported for the first time in this paper. Single crystals up to 5–8mm in diameter and 10–20 mm in length have been grown by Czochralski method. The transmittance spectra of Ba2ErCl7 single crystal has first been measured by using an HITACHI U-3500 spectrophotometer. There are three intense absorption peaks 4I9/24I11/2 and 4I13/2 in the infrared range which can be excited by 803nm, 980nm and 1.5μm laser diodes (LDs), respectively. The cut-off wavelength of the crystal is 230mn. Intense green luminescence can be observed when the crystal is pumped by a ED at 803nm. The formation of the defects is also discussed.  相似文献   

18.
Silica-based sol–gel glasses activated by Er3+ ions are attractive materials for integrated optics (IO) devices such as frequency upconverters and optical amplifiers. Monolithic erbium-activated silica xerogels with erbium content ranging from 0 up to 40 000 ppm were prepared by the sol–gel technique. Samples were densified by thermal treatment in air at 950°C for 120 h. The densification degree and the relative content of hydroxyl groups were studied by Raman spectroscopy. Refractive indices were measured at 632.8 and 543.5 nm by a prism coupling technique. Green to blue and violet upconversion luminescence upon continuous-wave excitation at 514.5 nm was observed for all samples. Emission at 1.5 μm, characteristic of the 4I13/24I15/2 transition of Er3+ ions, was observed at room temperature for all samples upon continuous-wave excitation at 980 nm. For the 5000 Er/Si ppm-doped xerogel, a photoluminescence was observed and a lifetime of 8 ms for the metastable 4I13/2 level was measured.  相似文献   

19.
Haigui Yang  Zhenwen Dai  Ningning Zu 《Journal of Non》2008,354(15-16):1796-1800
The effects of activator concentration on the relaxation of the 1I6, 1D2, 1G4 and 3H4 levels of Tm3+ were investigated by the analysis of the fluorescence decay curves in Tm3+ and Tm3+/Tb3+ doped ZBLAN glasses. UV and blue upconversion luminescence bands around 362 and 450 nm were observed by 655 nm laser excitation in all the samples. The upconversion mechanism was attributed to excited state absorption (ESA) by analyzing the decay profiles and the intensity dependence.  相似文献   

20.
采用高温固相法在空气气氛下合成了一系列Eu3+掺杂硼酸盐基质荧光粉。用X射线衍射、荧光光谱以及色坐标等手段对荧光粉的晶相和发光性能进行表征。通过LiBaB9O15中的碱金属以及碱土金属之间的相互取代,研究了基质组成的改变对荧光粉发光性能的影响。结果表明,在Li(Na,K)Ba(Sr,Ca)B9O15∶0.07Eu3+系列荧光粉中,LiSrB9O15∶0.07Eu3+荧光粉的发光强度最强。考察了煅烧温度、保温时间和Eu3+掺杂量对LiSrB9O15∶Eu3+荧光粉晶相和发光性能的影响,煅烧温度为750 ℃,保温时间为1~5 h时,样品的结晶性均良好。Eu3+掺杂量为0.52时,LiSrB9O15∶Eu3+荧光粉的发光强度最强。当x≥0.42(x=0.42,0.47,0.52,0.57)时,LiSrB9O15xEu3+色坐标均接近标准红光(0.67,0.33)。比较了LiSrB9O15xEu3+(x=0.02~0.57)荧光粉的611 nm(5D07F2)和586 nm(5D07F1)处发射峰相对强度比值R,R值变化不大,说明多数Eu3+在晶格中处于非反演对称中心的格位;比较了LiSrB9O15∶0.52Eu3+荧光粉和商用Y2O3∶Eu3+荧光粉的发光特性,在260 nm波长激发下,LiSrB9O15∶0.52Eu3+荧光粉的发光强度弱于Y2O3∶Eu3+荧光粉;在362 nm和394 nm波长激发下,LiSrB9O15∶0.52Eu3+荧光粉的发光强度强于Y2O3∶Eu3+荧光粉。  相似文献   

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