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1.
Er3+,Yb3+共掺杂SrTiO3超细粉末的可见上转换发光   总被引:1,自引:1,他引:0       下载免费PDF全文
钛酸锶(SrTiO3)具有高介电常数、良好的绝缘性质、优良的物理化学稳定性和在可见光范围内的优异的透明度等优点,是一种重要的无机功能材料。近年来,Al3+,Ga3+等离子共掺杂的SrTiO3:Pr3+做为一种优异的红色场发射显示(FED)荧光粉引起了人们的兴趣。另外,SrTiO3具有相对较小的声子频率,因而它可以作为一种有利于上转换发光的基质材料。以NaCl为助熔剂制备了Er3+,Yb3+共掺杂的SrTiO3超细粉末。在980nm激发下,样品发出很强的来自于Er3+离子的2H11/24I15/2,4S3/24I15/2(绿光)和4F9/24I15/2(红光)跃迁的上转换发光。Yb3+离子的共掺杂对Er3+离子的上转换发光起明显的增强作用。研究了上转换发光强度与稀土离子浓度以及激发光强度之间的依赖关系,表明在Er3+单掺杂和Er3+,Yb3+共掺杂的样品中,绿光和红光都是被双光子激发过程激发的。还对上转换发光的机理做了初步分析。  相似文献   

2.
Er3+/Yb3+共掺杂铋酸盐玻璃的上转换发光和能量传递   总被引:3,自引:2,他引:1       下载免费PDF全文
用高温熔融法制备了Er3+/Yb3+共掺杂的45Bi2O3-45GeO2-10PbO玻璃,对玻璃样品进行了光谱测试,分析了上转换发光机制和Yb3+→Er3+的能量传递效率。通过Yb3+离子浓度对Er3+离子在铋酸盐玻璃中的上转换荧光强度影响的研究,得到Er3+质量分数为0.5%以及Yb3+质量分数为2.5%时上转换发光强度最大。研究结果表明,在970nm泵浦激发下,Er3+/Yb3+共掺杂B45G45P10玻璃在532,545,673nm处产生较强的上转换绿光和红光,是一种较为理想的上转换发光基质材料。  相似文献   

3.
通过固相反应法制备了Er3+/Yb3+共掺杂ZrO2-Al2O3粉末的样品,并对样品在980nm激光激发下的上转换发光特性进行了研究.从发射光谱可以发现,在可见光范围内有3个强的发光带,一个位于654nm附近的红光带和两个分别位于545nm、525nm附近的绿光带,分别对应于Er3+离子的以下辐射跃迁:4F9/24I15/24S3/24I15/22H11/24I15/2.其中又以Er3+离子的4F9/24I15/2跃迁产生的红色荧光辐射最强.对其上转换发光机制进行了分析,发现这三个发光过程都是双光子过程.对样品粉末进行了XRD检测,发现ZrO2主要以立方相为主,并且计算得到了这种立方结构的晶格常数.Al2O3固溶于ZrO2中,Al3+嵌入ZrO2后产生氧空位,导致ZrO2晶体的对称性降低,这种结构变化更有利于提高上转换效率,即上转换发光强度增强. 关键词: 3+/Yb3+')" href="#">Er3+/Yb3+ 上转换 2-Al2O3')" href="#">ZrO2-Al2O3 荧光 稀土  相似文献   

4.
陈菊  丁玲红  张伟风 《发光学报》2013,34(11):1451-1456
采用溶胶-凝胶法合成Ln2Sn2O7:Er3+(Ln=La,Gd,Y)纳米晶。通过X射线衍射和场发射扫描电子显微镜测试了样品的晶体结构和形貌,同时对样品的上转换发光性能进行了测试。结果表明:在980 nm连续激发光的激发下,样品主要表现为绿光发射。发射中心在528,549 nm的绿光和672 nm处的红光发射分别对应Er3+离子的4S3/24I15/22H11/24I15/24F9/24I15/2跃迁。以La2Sn2O7:Er3+纳米晶为例,Er3+离子的摩尔分数为7%、退火温度为1 150℃是其制备的最佳条件,此时其各个发射峰的强度最高。对La2Sn2O7:Er3+的发光强度与激发功率关系的研究表明,其绿光和红光发射均为双光子过程。激发光吸收和能量转移是La2Sn2O7:Er3+纳米晶上转换发光的主要机制。  相似文献   

5.
为得到绿光和红光最大发光强度的Er3+/Yb3+共掺BaGd2ZnO5上转换材料荧光粉, 首先采用试验优化设计中的均匀设计初步寻找Er3+/Yb3+合理的掺杂浓度; 其次通过二次通用旋转组合设计进一步优化实验, 建立起Er3+/Yb3+掺杂浓度与绿光和红光发光强度的回归方程; 最后通过遗传算法计算出方程的最优解, 即绿光和红光最大发光强度时对应的Er3+/Yb3+掺杂浓度. 利用传统的高温固相法分别制备出最优样品. 采用X 射线衍射对得到荧光粉的晶体结构进行了分析, 证明了所有产物均为纯相BaGd2ZnO5. 采用980 nm抽运激光作为激发源, 在同样的条件下测量了样品的上转换荧光发射光谱, 从中可见样品有较强的红光发射和绿光发射, 发光中心位于662, 551和527 nm, 分别对应于4F9/24I15/2, 4S3/24I15/22H11/24I15/2能级跃迁. 研究了绿光和红光最优样品的上转换发光强度与激光器工作电流之间的关系, 通过分析发现红色和绿色上转换发光均为双光子过程. 由归一化的绿色上转换发射光谱可以看出, 激光器工作电流导致的样品温度变化可以忽略不计. 由于能级2H11/24S3/2之间存在热平衡, 并满足玻尔兹曼分布, 由此探讨了绿光最优样品上转换发射光谱中的绿色发射与温度的关系, 计算出2H11/24S3/2之间的能级差为ΔE=926.11 cm-1. 研究了绿光最优样品的温度效应, 随着温度的升高, 发射强度逐渐变小, 出现了温度猝灭现象. 并计算了样品的激活能, 分别为总体激活能ΔE=0.45 eV, 绿光激活能ΔE绿=0.45 eV, 红光激活能ΔE=0.46 eV.  相似文献   

6.
在Er3+/Yb3+共掺TeO2-WO3-ZnO玻璃中引入Ce3+,研究了Ce3+对Er3+1.5μm发射性能及其上转换发光性能的影响。结果表明,随Ce3+浓度的增加Er3+1.5μm波段的荧光强度先增强后降低,优化的Ce3+掺杂浓度在2.07×1020/cm3左右;1.5μm波段的荧光寿命则随Ce3+浓度的增加有轻微降低,从3.4ms降到3.0ms,但Ce3+浓度的增加对1.5μm波段的荧光半高宽基本无影响;Er3+/Ce3+间的交叉弛豫Er3+(4I11/2)+Ce3+(2F5/2)→Er3+(4I13/2)+Ce3+(2F7/2)使玻璃的上转换发光强度大大降低,但在过高的Ce3+浓度下,Er3+/Ce3+间的另一交叉弛豫Er3+(4I13/2)+Ce3+(2F5/2)→Er3+(4I15/2)+Ce3+(2F7/2)则使Er3+4I13/2能级粒子数减少,导致1.5μm波段荧光强度和荧光寿命降低. 关键词: 碲钨酸盐玻璃 发光性能 3+离子')" href="#">Er3+离子 3+离子')" href="#">Ce3+离子 交叉弛豫  相似文献   

7.
杨健芝  邱建备  杨正文  宋志国  杨勇  周大成 《物理学报》2015,64(13):138101-138101
本文采用高温固相反应法制备了Ba5SiO4Cl6: Yb3+, Er3+, Li+ 荧光粉, 并对其上转换发光性质及其发光机理进行了研究. 在980 nm 激光的激发下, Ba5SiO4Cl6: Yb3+, Er3+ 荧光粉呈现较强的红色(662 nm) 和较弱的绿色(550 nm) 的上转换发光, 红色和绿色的上转换发光分别对应于Er3+ 离子的4S3/2/2H11/24I15/24F9/24I15/2 跃迁, 且随着掺杂的Er3+ 和Yb3+ 离子浓度增加, 样品的上转换发光强度增加, 这是因为Yb3+ 离子和Er3+ 离子之间的能量传递效率增加引起的. 在0.5—0.8 W 功率激发下,样品属于双光子发射, 而在0.9—1.2 W 功率激发下样品具有新的上转换发光机理——光子雪崩效应. 探讨了Li+ 掺杂对Ba5SiO4Cl6: Yb3+, Er3+ 样品的上转换发光性质的影响, Li+ 离子的掺杂引起Ba5SiO4Cl6:Yb3+, Er3+ 上转换发光强度增加, 这是由于Li+ 离子的掺入降低了晶体场的对称性引起的.  相似文献   

8.
采用水热法制备了一系列不同掺杂浓度的NaGdF4:Re(Re=Tm3+,Er3+,Yb3+)上转换发光粉。通过X射线衍射(XRD)、电子扫描电镜(SEM)和上转换发射光谱对样品进行了表征。XRD研究结果表明:合成的样品均为六方结构NaGdF4。估算的平均晶粒尺寸为41~43 nm。在980 nm红外光激发下,Er3+和Yb3+共掺杂的NaGdF4发光粉发出分别来自于Er3+离子2H11/ 2,4S3/24I15/2跃迁的绿光和4F9/24I15/2跃迁的红光发射,Tm3+和Yb3+共掺杂的NaGdF4发光粉发出分别来自Tm3+离子的1G43H6跃迁的蓝光、1G43F43F2,33H6跃迁的红光和3H43H6跃迁的近红外光发射。Er3+,Tm3+和Yb3+共掺杂的NaGdF4发光粉的发光强度及红、绿、蓝光发射的相对强度受Yb3+离子掺杂浓度的影响。对样品中可能的上转换发光机制进行了讨论。计算的色坐标显示:可通过改变掺杂离子浓度对上转换发光的颜色进行调控。  相似文献   

9.
肖凯  杨中民  冯洲明 《物理学报》2007,56(6):3178-3184
研究了Er3+离子掺杂钡镓锗玻璃的吸收光谱、拉曼光谱和上转换光谱.分析了Er3+离子在钡镓锗玻璃中的上转换发光机理.结果表明:玻璃的最大声子能量为828cm-1,紫外截止波长为275nm.采用800nm和980nmLD激发玻璃样品,在室温下观察到强烈的上转换绿光和红光发射.随着Er3+离子浓度的增加,绿光发光强度先增加后减小,而红光发光强度呈单调递增趋势.能量分析表明:800nmLD激发产生的绿光主要源于Er3+离子4I13/2能级的激发态吸收过程;红光发射主要源于Er3+离子4I13/2能级与4I11/2能级之间的能量转移过程.980nmLD激发产生的绿光主要源于Er3+离子4I11/2能级之间的能量转移过程;而红光发射主要源于Er3+离子4I13/2能级与4I11/2能级之间的能量转移过程和4I13/2能级的激发态吸收过程.通过量子效率分析,发现采用800nmLD激发Er3+离子掺杂浓度为1mol% 的样品时,上转换绿光发光效率最高. 关键词: 上转换发光机理 3+离子掺杂')" href="#">Er3+离子掺杂 钡镓锗玻璃  相似文献   

10.
程丽红  曹望和  夏天 《发光学报》2004,25(4):355-358
制备了一种新型的上转换发光材料,它不仅具有较高的上转换发光效率,而且还避免了氟化物基质的缺点。其组分为58.52%PbF2-34.43% GeO2-3% Al2O3-0.05% Er2O3-4%Yb2O3,其中GeO2为玻璃形成体氧化物,PbF2和Al2O3为调整剂,以共掺杂Er3+和Yb3+离子为上转换研究的对象。测量了该玻璃系统在980nm半导体激光器激发下的上转换发光光谱,观察到很强的658nm的红光和548,526nm的绿光,而且红光的发射强度远远强于绿光。通过对上转换发光强度与激发强度关系曲线的拟合,表明此材料的绿光发射和红光发射都为双光子过程。研究了激发光的工作电流与上转换荧光强度的关系,讨论了其上转换发光特性。  相似文献   

11.
Upconversion luminescence has been studied for Er3+ in a germanate-oxyfluoride and a tellurium-germanate-oxyfluoride transparent glass-ceramic using 800 nm excitation. Significantly increased upconversion luminescence was observed from transparent glass-ceramics compared with that from their corresponding as-prepared glasses. In addition to a strong green emission centered at 545 nm from 4S3/2 state and a weaker red emission centered at 662 nm from 4F9/2 state generally seen from Er3+-doped glasses, a violet emission centered at 410 nm from 2H9/2 state and a near-ultra-violet emission centered at 379 nm from 4G11/2 state were also observed from transparent glass-ceramics. The upconversion luminescence of Er3+ ions in transparent glass-ceramics revealed sharp Stark-splitting peaks generally seen in a crystal host. The increased upconversion efficiency is attributed to the decreased effective phonon energy and the increased energy transfer between excited ions when Er3+ ions were incorporated into the precipitated β-PbF2 nanocrystals.  相似文献   

12.
Inverse opal photonic crystals of Y b3+, Er3+ co-doped TiO2 (TiO2:Yb, Er) were prepared by a self-assembly technique in combination with a sol-gel method. Upconversion (UC) luminescence properties of the inverse opals were investigated. The results show that photonic bandgap has significant influence on the upconversion emission of the TiO2:Yb, Er inverse opal photonic crystals. Significant suppression of the upconversion emission was detected if the photonic bandgap overlapped with the Er3+ ions emission band.  相似文献   

13.
用高温熔融法制备了系列Er3+/Yb3+共掺,Ho3+/Yb3+共掺,和Er3+/Yb3+/Ho3+三掺碲酸盐玻璃,在975nm激光抽运下三种掺杂玻璃中都出现了较强的绿光和红光上转换.研究了Yb3+离子对Er3+和Ho3+离子上转换发光强度的影响以及Yb3+→Er关键词: 3+/Yb3+/Ho3+共掺')" href="#">Er3+/Yb3+/Ho3+共掺 碲酸盐玻璃 光谱性质 上转换  相似文献   

14.
The Er3+/Yb3+ co-doped TeO2–TiO2–K2O glasses were prepared by conventional melting procedures, and their upconversion spectra were performed. The dependence of luminescence intensity on the ratio of Yb3+/Er3+ was studied, and the relationship between green upconversion luminescence intensity and Er3+ concentration is discussed in detail. The 546 nm green upconversion luminescence intensity is optimised in the studied glasses either when the Yb3+/Er3+ ratio is 25/1 and Er3+ concentration is 0.1 mol%, or when the Yb3+/Er3+ ratio is 10/1 and Er3+ concentration is 0.15 mol%. These glasses could be one of the potential candidates for LD pumping microchip solid-state lasers.  相似文献   

15.
李涛  张勤远  姜中宏 《物理学报》2006,55(8):4298-4303
研究了能量接受离子Ce3+对Er3+上转换发光强度以及Er3+在1.5μm附近波段发光性能参数的影响,并从能量匹配及能级结构角度出发对Er3+/Ce3+间的能量转移机制进行了分析.分析认为,4I11/2能级的Er3+通过无辐射能量转移把能量传递给2F5/2能级的Ce3+关键词: 氟磷酸盐玻璃 光谱性质 光纤放大器 3+和Ce3+')" href="#">Er3+和Ce3+  相似文献   

16.
B.S. Cao  Y.Y. He  M. Song 《Optics Communications》2011,284(13):3311-3314
Crystalline structures and infrared-to-visible upconversion luminescence spectra have been investigated in 1 mol% Er3+, 10 mol% Yb3+ and 0-20 mol% Li+ codoped TiO2 [1Er10Yb(0-20)Li:TiO2] nanocrystals. The crystalline structures of 1Er10Yb(0-20)Li:TiO2 were divided into three parts by the addition of Yb3+ and Li+. Both green and red upconversion emissions were observed from the 2H11/2/4S3/2 → 4I15/2 and 4F9/2 → 4I15/2 transitions of Er3+ in Er3+-Yb3+-Li+ codoped TiO2, respectively. The green and red upconversion emissions of 1Er:TiO2 were enhanced significantly by Yb3+ and Li+ codoping, in which the intensities of green and red emissions and the intensity ratio of green to red emissions (Igreen/Ired) were highly dependent on the crystalline structures. The significant enhanced upconversion emissions resulted from the energy migration between Er3+ and Yb3+ as well as the distortion of crystal field symmetry of Er3+ caused by the dissolving of Li+ at lower Li+ codoping concentration and the phase transformation at higher Li+ concentration. It is concluded that codoping with ions of smaller ionic radius like Li+ can efficiently improve the upconversion emissions of Er3+ or other rare-earth ions doped luminsecence materials.  相似文献   

17.
Yb3+/Er3+ co-doped Gd6MoO12 and Yb3+/Er3+/Li+ tri-doped Gd6MoO12 phosphors were prepared by adjusting the annealing temperature via the high temperature solid-state method. Under the excitation of 980 nm semiconductor, the upconversion luminescence properties were investigated and discussed. In the experimental process, we get the optimum Yb3+ concentration and the concentration quench effect will happen while the concentration extends the given region. According to the Yb3+ concentration quenching effects, the critical distance between Yb3+ ions had been calculated. The measured UC luminescence exhibited a strong red emission near 660 nm and green emission at 530 nm and 550 nm, which are due to the transitions of Er3+(4F9/2, 2H11/2, 4S3/2)  Er3+(4I15/2). Then the effect of excitation power density in different regions on the upconversion mechanisms was investigated and the calculated results demonstrate that the green and red upconversion is a two-photon process. A possible mechanism was discussed. After Li+ ions mixing, the upconversion emission enhanced largely, and the optimum Li+ concentration was obtained while fixed the Yb3+ and Er3+ on the above optimum concentration. This enhancement owns to the decrease of the local symmetry around Er3+ after Li+ ions doping into the system. This result indicates that Li+ is a promising candidate for improving luminescence in some case.  相似文献   

18.
GdVO4 single crystal co-doped with Yb3+ and Er3+ was grown by the Czochralski method. The X-ray powder diffraction pattern of Yb,Er:GdVO4 crystal confirms that the as-grown crystal is isostructural with pure GdVO4 crystal. Its polarized absorption spectra and non-polarized fluorescence spectra were measured at room temperature. The absorption band at 984 nm for π-polarization has an FWHM of about 36 nm, which is favorable for InGaAs LD laser pumping. The spectrum properties of Er3+ in Yb,Er:GdVO4 crystal were investigated based on Judd–Ofelt theory. There is strong energy transfer from Yb3+ to Er3+ in this crystal. When excited with 980 nm radiation, this crystal emitted strong fluorescence at about 1529 nm and 552.5 nm. The total energy transfer rate and efficiency from Yb3+ to Er3+ is 3.33 ms-1 and 67%, respectively. The energy transfer between Er3+ and Yb3+ ions is a multistep transfer process, and was investigated based on a random-walk model. The investigation result shows that there is strong cooperative-sensitization effect from Yb3+ to Er3+, which is the main upconversion energy-transfer process in this crystal. PACS 42.70.Hj; 81.10.Fq; 42.55.Rz  相似文献   

19.
Transparent phosphate glass ceramics co-doped with Er3+ and Yb3+ in the system P2O5Li2OCaF2TiO2 were successfully synthesized by melt-quenching and subsequent heating. Formation of the nanocrystals was confirmed by X-ray powder diffraction. Judd–Ofelt analyses of Er3+ ions in the precursor glasses and glass ceramics were performed to evaluate the intensity parameters Ω2,4,6. Under 975 nm excitation, intense upconversion (UC) and infrared emission (1545 nm) were observed in the glass ceramics by efficient energy transfer from Yb3+ to Er3+. The luminescence processes were explained and the emission cross section was calculated by Fuchtbauer–Ladenburg (F–L) formula. The results confirm the potential applications of Er3+/Yb3+ co-doped glass ceramics as laser and fiber amplifier media.  相似文献   

20.
The upconversion luminescence of Er3+/Yb3+ ions is researched in a novel transparent oxyfluoride borosil icate glass and glass ceramics under 980-nm excitation.Fluoride nanocrystals Ba2 YF7 are successfully precipitated in glass matrix,which is affirmed by the X-ray diffraction results.Compared with the parent glasses.significant enhancement of upconversion luminescence is observed in the Er3+/Yb3+ codoped transparent glass-ceramics.which may be due to the variation of coordination environment around Er3+ and Yb3+ ions after crvstallization.The possible upconversion mechanism is also discussed.  相似文献   

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