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1.
于晶杰  肖志国  宁桂玲 《发光学报》2013,34(12):1561-1566
采用高温固相法合成了荧光体Ba10(PO44(SiO42:Ce3+和Ba10(PO44(SiO42:Eu2+,研究了两种荧光体的光谱特性。结果表明,两者都呈现较强的宽带激发特征。根据同种基质中Eu2+和Ce3+两种离子光谱特征的相关性,通过测得的Ba10(PO42(SiO42基质中Ce3+的光谱数据估算了Ba10(PO42(SiO42:Eu2+中Eu2+的斯托克斯位移(ΔS)和激发能量,估算结果与Ba10(PO42(SiO42:Eu2+样品的光谱分析结果十分吻合。Ba10(PO42(SiO42:Eu2+可以同时被紫光和蓝光激发,发出偏白的绿光,可用作白光LED的荧光粉。  相似文献   

2.
利用高温固相法合成了Ca9.15La0.9(PO4)7∶0.05Eu2+,yMn2+和Ca9.3La0.8(PO4)7∶0.05Eu2+,yMn2+系列荧光粉。通过荧光粉的发射光谱和荧光衰减曲线证实Eu2+、Mn2+之间存在能量传递,且增大Mn2+的掺杂浓度,获得了从青光(绿光)到白光变化的荧光粉。材料的热稳定性显示Eu2+的两个不同颜色的发射峰表现出不同的温度猝灭行为。Ca9.15La0.9(PO4)7∶0.05Eu2+,0.35Mn2+的色坐标接近标准白光且色温与太阳光相近,光谱覆盖整个可见光区域。研究结果...  相似文献   

3.
测量了碱土金属正磷酸盐Ba3(PO4)2和Sr3(PO4)2常温及高温拉曼光谱, 对拉曼振动模式进行指认, 并分析了晶体拉曼振动光谱及晶体结构在高温下的变化. 在温度升高的过程中, 拉曼振动频率向低频移动且振动峰宽度展宽, 晶体中的P-O平均键长随温度升高而变长, 但O-P-O的键角并未发生变化. 晶体在900 ℃以下无结构相变发生. 关键词: 3(PO4)2和Sr3(PO4)2')" href="#">Ba3(PO4)2和Sr3(PO4)2 高温拉曼光谱 振动模式 高温结构  相似文献   

4.
钛酸盐因其优异的物理化学性能,可作为高放射性核废物(HLW)和锕系元素(钚)的重要候选固化材料之一。采用传统的陶瓷烧结工艺制备了多晶的Lu2Ti2O7和Lu2TiO5陶瓷材料。在室温下,用800 keVKr2+对两种材料进行辐照,辐照后的样品采用GIXRD进行表征,观察到两种样品都经历了先肿胀、然后再发生非晶相变的过程。不同的是Lu2Ti2O7的晶格肿胀程度大于Lu2TiO5。另外,Lu2TiO5样品的辐照到2×1014 ions/cm2时非晶含量达95.54%,而Lu2Ti2O7样品在此剂量下非晶含量只有74.66%。通过第一性原理计算了Lu2Ti2O7晶体的晶格肿胀随反位浓度的变化关系,结果表明,Lu2Ti2O7出现非晶前的晶格肿胀主要由阳离子反位导致,而Lu2TiO5是无序的萤石结构,其辐照所导致的晶格肿胀不含阳离子反位的贡献,晶格肿胀程度较低。  相似文献   

5.
郑辉  相苏原  陈宝玖 《发光学报》2014,35(7):800-806
采用微波水热方法合成了Er3+/Yb3+及Tm3+/Yb3+两个共掺杂的绣球花状NaY(WO42微米球样品。XRD结果表明所获得的产物为纯相体心结构的NaY(WO42,利用SEM观察发现产物粒子结构为纳米片组装成的绣球花状。考虑到红外激光辐照对样品产生加热效应,采用380 nm激发下不同温度的发射光谱获得了Er3+/Yb3+共掺杂NaY(WO42微米球的温度传感特性曲线和灵敏度曲线。把Er3+/Yb3+共掺杂NaY(WO42与Tm3+/Yb3+共掺杂的NaY(WO42按质量比1:10进行混合,采用980 nm激发测量了混合物的上转换发光光谱,研究了激光持续辐照对Tm3+/Yb3+掺杂NaY(WO42样品的加热效应和Tm3+1G43H6 跃迁发光强度随激光辐照时间的变化。实验发现980 nm激光辐照使Tm3+/Yb3+掺杂NaY(WO42样品的温度持续升高并达到某一平衡温度,Tm3+的蓝色上转换发光也随着激光辐照时间的延长而增强,最后达到饱和。此外,在相同条件下,Tm3+/Yb3+共掺杂样品的激光辐照热效应比Er3+/Yb3+共掺杂样品的热效应更为显著。  相似文献   

6.
米瑞宇  夏志国  刘海坤 《物理学报》2013,62(13):137802-137802
采用高温固相法制备了Ca4-xY5.95 (SiO4)6F2:0.05Ce3+, xMn2 +系列荧光粉,并对其发光性质以及Ce3+, Mn2 +在Ca4Y6 (SiO4)6F2 (CYSF)基质中的能量传递过程进行了研究.相结构研究表明: CYSF属于一种基于磷灰石结构的类质同象化合物.CYSF: 0.05Ce3+, xMn2+荧光粉在200–373 nm为宽带激发光谱,Ce3+和Mn2+在408 nm和602 nm的发射峰分别由Ce3+的5d→4f的跃迁和Mn2+4T1 (4G)→ 6A1 (6S)的跃迁产生.光谱重叠现象以及荧光寿命测试结果证明了Ce3+对Mn2+具有敏化作用,能级结构分析进一步证实该体系中存在Ce3+→Mn2+的能量传递过程,可有效地将Ce3+的蓝光转换为红橙光. 关键词: 磷灰石 发光性质 能量传递  相似文献   

7.
NaZnLa(PO4)2中Ce3+和Tb3+的发光   总被引:2,自引:0,他引:2       下载免费PDF全文
采用高温固相反应合成了NaZnLa(PO4)2中掺杂Ce3+、Tb3+的荧光体,对其晶体结构、发光行为进行了研究,并尝试对NaZnLa(PO4)2:Ce,Tb荧光体进行调制。NaZnLa(PO4)2是LaPO4的同构物,为单斜晶系独居石结构,从XRD谱数据得到NaZnLa(PO4)2基质的晶胞参数为a=0.6823nm,b=0.7045nm,c=0.6497nm,β=1039°,v=0.303nm3,其晶胞参数与单斜LaPO4的晶胞参数相似。在NaZnLa(PO4)2:Ce,Tb荧光体中,Ce3+对Tb3+有良好的敏化作用,掺杂适量的BO33-、Al3+、Dy3+,可以增强发光亮度。  相似文献   

8.
本文用扩展X射线吸收谱(EXAFS)和X射线大角散射谱(WAXS)对远红外光纤材料复合卤化物玻璃(MnF2)x(BaCl2)166-x(x=65,60,55)的短程结构进行了研究。从MnK吸收限的EXAFS和样品的非晶衍射图,得到了Mn原子的近邻原子配位信息。结果表明F,Cl原子在Mn原子周围形成了混合配位的八面体(MnCl2F4),这些八面体以Mn—F键为桥键连成“之”字型 关键词:  相似文献   

9.
以Eu2O3、NH4H2PO4、BaCl2·2H2O、BaCO3为原料,用高温固相法制备出Ba5(PO43Cl:Eu2+荧光粉。用XRD衍射仪和荧光分光光度计分别测试样品的物相结构和荧光性能。结果表明:制备得到的Ba5(PO43Cl:Eu2+为单相,在245~425 nm范围均有较大吸收,具有最强峰在435 nm的窄带发射。该荧光粉的发光强度受Eu2+浓度的影响较大,其发光随着Eu2+浓度的增加先增强后减弱。当Eu2+摩尔分数为3%时,发光强度达到最大。  相似文献   

10.
熊晓波  刘万里  袁曦明  刘金存  宋江齐  梁玉军 《物理学报》2015,64(24):247801-247801
采用高温固相法制备了SrZn2(PO4)2:Sn2+(SZ2P:Sn2+), SrZn2(PO4)2:Mn2+(SZ2P:Mn2+), SrZn2 (PO4)2:Sn2+, Mn2+(SZ2P:Sn2+, Mn2+) 荧光粉. 通过X射线衍射、激发和发射光谱详细研究了荧光粉的物相和发光性质. 在SrZn2(PO4)2 基质中, Sn2+离子发射光谱是峰值位于461 nm宽带谱, 归属于Sn2+离子的3P11S0能级跃迁, SZ2P:Mn2+激发光谱由基质吸收带(200–300 nm)和位于352, 373, 419, 431和466 nm的一系列激发峰组成, 分别对应Mn2+离子的6A1(6S)→4E(4D), 6A1(6S)→4T2(4D), 6A1(6S)→[4A1(4G), 4E(4G)], 6A1(6S)→4T2(4G)和6A1(6S)→4T1(4G)能级跃迁, 因此, SZ2P:Sn2+ 的发射光谱与SZ2P:Mn2+的激发光谱有较大范围的重叠. 结果表明Sn2+对Mn2+发光有明显的敏化作用. 基于Dexter电多极相互作用能量传递公式和Reisfeld近似原理分析, 荧光粉SZ2P:Sn2+, Mn2+中Sn2+-Mn2+离子之间的能量传递机理属于电四极-电四极相互作用引起的共振能量传递, 并计算出Sn2+-Mn2+离子之间能量传递临界距离Rc ≈ 1.78 nm. 通过改变Sn2+, Mn2+离子掺杂浓度, 实现了荧光粉发光颜色的调节, 在254 nm短波紫外激发下荧光粉发出较强的蓝白光. 研究结果表明SZ2P:Sn2+, Mn2+荧光粉有望应用于紧凑型节能灯照明领域, 随着半导体紫外芯片技术的发展, 有潜力应用于未来的白光发光二极管照明领域.  相似文献   

11.
Materials from the Mn(0.5−x)CaxTi2(PO4)3 (0≤x≤0.50) solid solution were obtained by solid-state reaction in air at 1000 °C. Selected compositions were investigated by powder X-ray diffraction analysis, 31P nuclear magnetic resonance (NMR) spectroscopy and electrochemical lithium intercalation. The structure of all samples determined by Rietveld analysis is of the Nasicon type with the R space group. Mn2+/Ca2+ ions occupy only the M1 sites in the Ti2(PO4)3 framework. The divalent cations are ordered in one of two M1 sites, except for the Mn0.50Ti2(PO4)3 phase, where a small departure from the ideal order is observed by XRD and 31P MAS NMR. The electrochemical behaviour of Mn0.50Ti2(PO4)3 and Mn(0.5−x)CaxTi2(PO4)3 phases was characterised in Li cells. Two Li ions can be inserted without altering the Ti2(PO4)3 framework. In the 0≤y≤2 range, the OCV curves of Li//LiyMn0.50Ti2(PO4)3 cells show two main potential plateaus at 2.90 and 2.50–2.30 V. Comparison between the OCV curves of Li//Li(1+y)Ti2(PO4)3 and Li//LiyMn0.50Ti2(PO4)3 shows that the intercalation occurs first in the unoccupied M1 site of Mn0.50Ti2(PO4)3 at 2.90 V and then, for compositions y>0.50, at the M2 site (2.50–2.30 V voltage range). The effect of calcium substitution in Mn0.50Ti2(PO4)3 on the lithium intercalation is also discussed from a structural and kinetic viewpoint. In all systems, the lithium intercalation is associated with a redistribution of the divalent cation over all M1 sites. In the case of Mn0.50Ti2(PO4)3, the stability of Mn2+ either in an octahedral or tetrahedral environment facilitates cationic migration.  相似文献   

12.
一种新型的白光LED用绿色荧光粉Ca_8MgLu(PO_4)_7∶Tb~(3+)   总被引:2,自引:1,他引:1  
采用高温固相法合成一种单一纯相绿色荧光粉Ca8Mg Lu(PO4)7∶Tb3+,通过X射线衍射(XRD)、荧光光谱(PLE,PL)和荧光寿命曲线研究了Ca8Mg Lu(PO4)7∶Tb3+的发光性能。Ca8Mg Lu(PO4)7∶Tb3+能被378nm的近紫外光激发,Tb3+发生5D4-7F5跃迁发出绿光,色坐标为(0.324,0.592)。Ca8Mg Lu(PO4)7∶Tb3+的量子效率可达84%,热猝灭性能良好:在150℃和200℃的发光强度积分分别是25℃的90.71%和86.36%。研究结果表明Ca8Mg Lu(PO4)7∶Tb3+是一种理想的适于NUV-LED芯片激发的白光LED用绿色荧光粉。  相似文献   

13.
孔祥刚  袁志红  虞游  高涛  马生贵 《中国物理 B》2017,26(8):86301-086301
The electronic, elastic, vibrational, and thermodynamic properties of Sr_(10)(PO_4)_6F_2(Sr-FAP) and Ca_(10)(PO_4)_6F_2(CaFAP) are systematically investigated by the first-principles calculations. The calculated electronic band structure indicates that the Sr-FAP and Ca-FAP are insulator materials with the indirect band gap of 5.273 eV and 5.592 eV, respectively. The elastic constants are obtained by the "stress–strain" method, and elastic modulus are further evaluated and discussed. The vibrational properties, including the phonon dispersion curves, the phonon density of states, the Born effective charge, and associated longitudinal optical and transverse optical(LO–TO) splitting of optical modes, as well as the phonon frequencies at zone-center are obtained within the linear-response approach. Substitution of Ca by Sr causes phonon frequencies to shift to lower values as expected due to the mass effect. Additionally, some phonon-related thermodynamic properties, such as Helmholtz free energy F, internal energy E, entropy S, and specific heat C_V of Sr-FAP and Ca-FAP are predicted with the harmonic approximation. The present calculated results of two apatites are consistent with the reported experimental and theoretical results.  相似文献   

14.
Electrochemical lithium insertion into (PO2)4(WO3)2m, where m=9 and 10, has allowed the determination of several phases Lix(PO2)4(WO3)2m between 3.4 and 0.01 V vs Li+/Li0. After the first cycle the electrochemical system was unable to maintain the high specific capacity of the cells (540 Ah/kg) due to irreversible processes. Nevertheless at high voltage values, above 1.4 V vs Li+/Li0, the lithium insertion proceeded through a reversible mechanism. By means of X-ray diffraction experiments we have detected the nature of different phases Lix(PO2)4(WO3)2m formed and we have established a correlation with the reversible/irreversible processes detected during the electrochemical insertion.  相似文献   

15.
Phosphates of general formula M0.5Hf2(PO4)3 with M=Cd2+, Ca2+, Sr2+ and Cu2+ were prepared by coprecipitation and characterized by several physical techniques. The compounds containing Cd2+, Ca2+, Sr2+ belong to the Nasicon-type structure, whereas Cu0.5Hf2(PO4)3 exhibited substantially different DRX patterns. Combined temperature programmed reduction (TPR) and temperature-programmed oxidation (TPO) showed that the copper in Cu0.5Hf2(PO4)3 was distributed between two energetically different sites in proportions respectively equal to 40 and 60%. Electron Paramagnetic Resonance (EPR) investigations confirmed the TPR/TPO results and revealed that the two sites hosting the Cu2+ ions are of orthorhombic symmetry. Moreover, the Cu2+ ions might be reduced by hydrogen to Cu+. These results were also supported by the UV–visible studies that showed the disappearance, under reducing conditions, of the band corresponding to crystal field transitions of Cu2+ ions and the emergence of a new peak attributed to the transitions between (3d)10 and (3d)9(4s)1 Cu+ levels. At the same time, IR spectroscopy confirmed that protons entered the open lattice framework of the material and gave rise to a new protonated phase containing monovalent copper Cu0.5IH0.5Hf2(PO4)3. This redox process was proven to be reversible without any subsequent change in the network of the phosphate.  相似文献   

16.
The effect of hole self-trapping in Ba3(PO4)2 at low temperatures has been studied. The TSL peak at 135 K is due to hole delocalization and diffusion by thermally activated hopping between perfect lattice sites, resulting in a composite uv band, corresponding to the tunneling recombination of holes with localized electrons.  相似文献   

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