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1.
以FeCl2和KOH为原料采用水热法制备Fe3 O4粉体,然后以氧化钇、氧化铕和氧化铽为原料制备Eu3+,Tb3+共掺杂的Y2 O3荧光粉体,并通过XRD对粉体的物相结构进行分析;然后以三聚氰胺以及所制备的Fe3 O4和Y2 O3:Eu3+,Tb3+粉体为原料,采用微波烧结法在Ar气氛下制备FeYO3/Y2 O3:1;Eu3+,1;Tb3+粉体,并对其磁学性能进行了研究.研究结果表明:当Fe3 O4,Y2 O3:1;Eu3+,1;Tb3+和三聚氰胺比例为1:3:4时,所制备的FeYO3/Y2 O3:1;Eu3+,1;Tb3+粉体的磁力饱和强度为12.299 emu·g-1,磁力最强.  相似文献   

2.
采用高温固相法合成了Ce3+,Tb3+激活的KNaCa2(PO4)2发光材料,并对其发光特性进行了研究.荧光光谱测试表明:Ce3+的加入显著增强了Tb3+的发射强度,观察到Ce3+对Tb3+的发光存在明显的敏化现象,且测得KNaCa2(PO4)2∶xCe3,yTb3+的最佳掺杂浓度为x=0.01,y=0.16.根据Forster-Dexter理论判定KNaCa2(PO4)2∶Ce3+,Tb3+中Ce3+对Tb3+的能量传递属于电偶极-电四极相互作用引起的共振能量传递.研究表明,KNaCa2(PO4)2∶Ce3+,Tb3+材料是一种优良的紫外-近紫外激发白光LED用高亮度绿色发光材料.  相似文献   

3.
采用水热法以FeCl2和KOH为原料制备Fe3 O4粉体,以氧化钇、氧化铕和氧化铽为原料制备Y2 O3:1;Eu3+,5;Tb3+粉体,然后以Fe3 O4粉体,Y2 O3:1;Eu3+,5;Tb3+粉体和三聚氰胺为原料,采用微波烧结法在Ar气气氛下制备FeYO3/Y2 O3:1;Eu3+,5;Tb3+复合粉体,利用XRD衍射仪对各种粉体的结构进行分析,利用扫描电镜对复合粉体的形貌进行观察,并利用振动样品磁强计对复合粉体的磁学性能进行研究.结果表明:复合粉体均呈针状,长度和细度均为纳米级.当Fe3 O4,Y2 O3:1;Eu3+,5;Tb3+和三聚氰胺比例为1:3:4时,所制备的FeYO3/Y2 O3:1;Eu3+,5;Tb3+粉体磁力最强,磁力饱和强度为11.3 emu·g-1.  相似文献   

4.
利用高温固相法,合成出Eu2+、Ce3+、Mn2+共掺的Ca8Mg(SiO4)4Cl2系列绿色荧光粉。通过XRD表征了这些荧光粉的结构,通过分子荧光光谱仪研究了它们的室温发光性能。首先调查了Eu2+掺杂的Ca8Mg(SiO4)4Cl2绿色荧光粉发光性能,随后引入Ce3+、Mn2+提高了Ca8Mg(SiO4)4Cl2∶Eu2+在紫外光区的吸收强度及绿光发射强度。最后将筛选出来的荧光粉与InGaN-LED芯片组装制作成单一绿光LED器件,利用Ca7.8215MgSi4O16Cl2∶0.0525Eu2+,0.056Ce3+,0.070Mn2+所制作成的绿光LED器件发光最强,在20mA电流激发下,此LED发很强的绿光,其电致发光光谱所对应的色坐标值为:x=0.26,y=0.55。  相似文献   

5.
通过高温固相法制备了一系列Ce3+/Eu2+共掺杂的Ba3Si6O12N2,利用X射线衍射(XRD)研究了其晶体结构.研究表明,Ba3Si6O12N2∶ Ce3+,Eu2+荧光粉在338 nm光激发下可以发射525 nm的绿光,且具有较大的半峰宽.研究还发现,单掺Ce3的发射光谱和单掺Eu2+的发射光谱存在交叠,同时Ce3+的5d1最低能级能量低于Eu2+的4f65d1最低能级,这二者共同证实了可能存在Ce3+到Eu2+的能量转移现象.同时还研究了Ce3+浓度对Ba(2.7-y)Si6O12N2∶0.3Eu2+,yCe3+(0≤y≤0.1)系列荧光粉发光强度和波长的影响.热猝灭性能研究表明,Ce3+引入可显著影响体系的热猝灭性能.  相似文献   

6.
乐天  曾庆光  张梅  沙为超  罗坚义  龙拥兵 《人工晶体学报》2012,41(6):1649-1652,1685
采用水热法合成了Tb3+和Eu3+共掺的2ZnO.2.2B2O3.3H2O红色荧光粉。通过固定Eu3+的掺杂浓度为3%(物质的量比:Eu∶Zn=3%),改变Tb3+的掺杂浓度(2%~15%),研究Tb3+掺杂浓度对红色荧光粉晶相结构和光学性能的影响。用X射线衍射和荧光光谱仪对样品的结构和发光性能进行表征,结果表明:随着Tb3+掺杂浓度的升高,样品由晶态向无定形的玻璃态转变;Eu3+的发光强度也逐渐增强;Tb3+与Eu3+之间存在能量传递的过程,且当采用不同的激发波长(220 nm和393 nm)激发时,其能量传递的过程也不一样。  相似文献   

7.
通过传统的高温固相法成功的制得了一系列紫外激发的硅酸盐荧光粉Na2 Ca3 Si2O8∶Tb3+,Eu3+.X射线衍射(XRD)研究表明所制得的荧光粉为纯相.在Na2Ca3Si2O8∶Tb3+,yEu3+荧光粉体系中,随着Eu3+的掺杂浓度增大,发射光谱中Tb3的特征峰发光强度降低而Eu3+的不断升高,并且荧光寿命不断减小,说明了Tb3+和Eu3之间能量传递方式是交换相互作用,能量传递效率(ET)达到了15.8;.此外,通过CIE色坐标观察到,随着Eu3+浓度的增加,样品从绿色变成黄色,最终变成红色.由于它多彩的颜色变化,所以它是一种用于制作多彩LED的良好材料.  相似文献   

8.
通过微波法制备了CaMoO4:Tb3+,Eu3+白色荧光粉.采用X射线粉末衍射仪、扫描电子显微镜和荧光光谱仪对样品材料的结构、形貌和发光性能进行了表征.分别讨论了在不同助剂、不同反应浓度、不同反应温度及稀土离子Eu3+和Tb3+共掺比例变化对荧光粉的发光性能的影响.结果表明:不加活性剂所得CaMoO4:Tb3+,Eu3+样品在反应浓度为0.06 mol/L、反应温度为120℃时发光性能最好;通过调节CaMoO4:Tb3+,Eu3+荧光粉中稀土离子Eu3+和Tb3+共掺比例荧光粉的发光颜色可以很容易地从冷白光变为暖白光.  相似文献   

9.
用氯化铕和2,4-吡啶二甲酸在水热条件下反应合成了一个二维铕稀土配位聚合物{[Eu (pdc) (ox)05(H2O)4]·2H2O}n(1)(H2pdc=2,4-吡啶二甲酸;ox=草酸根阴离子),草酸根离子由部分2,4-吡啶二甲酸分解产生.X-射线单晶衍射分析表明,该配位聚合物属单斜晶系,P121/c1 (No.14)空间群,晶胞参数为a=1.53047(15) nm,b=1.10973(9) nm,c =0.85494(15) nm,β=102.81(1)°,α=y =90°.Eu3+为九配位,除了与一个pdc阴离子配体和一个ox阴离子配体螫合配位外,还与四个水分子配位.pdc阴离子通过2-位羧基以μ2-桥联方式连接两个Eu3+,吡啶环上的氮原子与其中一个Eu3+配位,4-位羧基没有参与配位.草酸根阴离子以螯合方式连接两个Eu3+.配体pdc和ox与Eu3+通过配位键连接形成了少见的2D之字形平面,该配合物在紫外光的激发下显示鲜艳的红色荧光,表明该配位聚合物具有良好的荧光性质,热重分析表明该配位聚合物具有较好的热稳定性.  相似文献   

10.
采用微波水热法快速合成了Zn0.9975-xWO4∶0.0025Eu3+,xDy3+ (x =0,0.0025,0.005,0.01,0.02)一系列单一基质白色荧光粉.通过X射线粉末衍射仪、扫描电镜、荧光分光光度计、光谱分析仪等对样品进行分析表征.结果 表明:在180℃下仅用2h即可合成单斜晶系黑钨矿结构的ZnWO4∶Eu3+,Dy3纯相,且有较高的结晶度;样品颗粒为类球形,尺寸在50 nm左右.在303 nm的紫外光激发下,该荧光粉可以同时产生WO2-、Dy3和Eu3+的特征发射,主峰分别位于472 nm、583 nm和617 nm.当样品组成为ZnWO4∶0.0025 Eu3,0.005Dy3+时,其色坐标为:x=0.3359,y=0.3064,接近理想白光,色温:5290 K.  相似文献   

11.
(C2N2H10)2Mg(HP2O7)2·2H2O, is a new inorganic organic hybrid structure. It has been synthetized using wet chemistry. Its crystal structure consists of cis- and trans-edge sharing [MgO4(H2O)2] octahedra resulting in chains, which are linked via [HP2O7] units to form [Mg(HP2O7)2(H2O)2]4− layers. The Mg2+ cations and the ethylendiammonium cations are located on centers of inversion. The ethylendiammonium cations are alternately located in the interlayer space. The cohesion of the crystal is well ensured by coulombic interactions between anions and cations and by several hydrogen bonds. The diphosphate anion shows an eclipsed conformation.  相似文献   

12.
Single crystals of Rb2[GeO2(OH)2] · 2H2O are studied by X-ray diffraction. The crystals belong to the orthorhombic system, sp. gr. Pna21, a = 13.523(6) Å, b = 8.143(4) Å, c = 13.407(6) Å, Z = 8, R 1 = 0.0506. In [GeO2(OH)2]2? anions, the Ge-O distances (1.71–1.73(1) Å) are shorter than the Ge-OH distances (1.76–1.80(1) Å). Anions are linked to each other by pairs of hydrogen bonds to form infinite chains. The chains are linked by hydrogen bonds involving water molecules to form a 3D structure. The assignment of the bands in the IR spectrum of the compound under study is performed.  相似文献   

13.
本文研究了SiO2涂层对BaSi2O2N2∶ Eu2蓝绿色荧光粉发光性能和热性能的影响.采用溶胶-凝胶法制备了SiO2包覆的BaSi2O2N2∶Eu2+蓝绿色荧光粉.实验结果表明,最佳镀膜量为6wt;,当镀膜量大于此值时,荧光粉亮度迅速降低.涂覆SiO2后,在150℃下BaSi2O2 N2∶Eu2荧光粉的热猝灭性能提高了2.4;,在500℃热降解后荧光粉的发光性能提高了15;.SiO2涂层显著提高了BaSi2O2N2∶Eu2+荧光粉的热稳定性.SiO2涂层的作用机理是在荧光粉表面和氧化气氛之间形成阻挡层,保护Eu2的发光中心在热加热过程中不被氧化.  相似文献   

14.
15.
Refractive indices and their dispersion in the wavelength range from 365 nm to 2325 nm and transmission ranges of the tetragonal melilite‐type germanates Sr2MgGe2O7, Sr2ZnGe2O7 and Ba2ZnGe2O7 were determined. The uniaxial positive crystals Sr2MgGe2O7 and Ba2ZnGe2O7 both offer the possibility for phase matched second harmonic generation, a detailed analysis of phase matching conditions is given. The refractive indices of Sr2ZnGe2O7 show an isoindex (isotropic) point at 467 nm. The investigation was performed on Czochralski grown large single crystals. The crystal structure of all three germanates were determined by means of X ‐ray diffraction. The results corroborate unmodulated melilite‐type structures at room temperature. (© 2009 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

16.
The salt bis 4-benzyl piperidinium monohydrogenmonophosphate pentahydrate is orthorhombic with the following unit cell dimensions: a = 11.235(2) Å, b = 27.924(6) Å, c = 9.321(4) Å space group Pca21 with Z = 4. The structure was solved by the Patterson method and refined to final R value of 0.049 for 1802 independent reflections. The flack parameter is 0.14 with an e.s.d. of 0.23. The structure consists of infinite parallel two-dimensional [110] planes built of mutually connected ions and water molecules by strong O—H,...,O and N—H,...,O hydrogen bonding. There are no contacts other than normal van der Waals interactions between the layers.  相似文献   

17.
Syntheses and single-crystal X-ray structural results are reported for three new mixed diphosphates of the family AI 2BII 3(P2O7)2; Ag2Co3(P2O7)2 (I), Ag2Mn3(P2O7)2 (II), and Na2Cd3(P2O7)2 (III). All crystallize in the triclinic system, space group P1 bar: (I) a = 5.351(4), b = 6.375(4), c = 16.532(4) Å, = 80.83(6) = 81.45(4), = 72.87(5)°, V = 528.9(6) Å3, Z = 2, D calc = 4.649 mg/m3, R/Rw = 0.0428/0.0548 for 3949 obs. reflns; (II) a = 5.432(7), b = 6.619(6), c = 16.51(3) Å, = 80.78(8) = 82.43(9), = 72.82(7)°, V = 557.7(13) Å3, Z = 2, D calc = 4.338 mg/m3, R/Rw = 0.0679/0.1303 for 2100 obs. reflns and (III) a = 5.67(3), b = 7.08(4), c = 7.90(4) Å, = 77.0(2), = 82.5(2), = 67.8(2)°, V = 286(3) Å3, Z = 2, D calc = 4.249 mg/m3, R/Rw = 0.0307/0.0342 for 1945 obs. reflns. (I) and (II) are isostructural but (III) is of a different type. All three structures are characterized by layers of P2O7 groups alternating with layers of mixed metal atoms. Differences are seen in the conglomerate bonding patterns of B atoms and in the irregular geometry of Ag in (I) and (II) compared to the octahedral bonding seen for Na in (III). The differences in structure may be understood in terms of the ratios of the ionic radii of A and B atoms.  相似文献   

18.
Single crystals of a new compound, (NH4)2CuBr2Cl2.2H2O, were grown from saturated aqueous solution at room temperature by slow evaporation method. The grown crystals were characterized through elemental, powder XRD, thermal and DSC analyses and FTIR and far IR spectra. The elemental analysis and the decomposition pattern formulated using the TG‐DTG studies confirm the stoichiometry of the compound. The crystallinity of the compound is confirmed from the powder XRD pattern. A preliminary single crystal X‐ray diffraction structural analysis reveals that the title compound belongs to the orthorhombic system with a = 7.7466 Å, b = 7.783 Å and c = 8.1211 Å. The low temperature DSC shows thermal anomalies at –161.1, –156.5, –152.4, –145.2, –134, –18.5, and 1.4°C during the heating run and at –4.3, –54.8, –66.1, –90.6, –109.7 and –147.2 °C during the cooling run. The thermal hysterses indicate first order phase transitions in the title compound at these temperatures. The FTIR spectra were used to assign the characteristic vibrational frequencies due to NH4+, CuX42– ions and other chemical bonds. The effect of substitution of two bromine atoms on the phase transitions of a closely related crystal, diammonium tetrachloro cuprate dihydrate is also discussed. (© 2005 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

19.
Lead (II) nitrate reacts with 1,10-phenanthroline and sodium diethyldithiocarbamate in water to produce yellow bisdiethyldithiocarbamata 1,10-phenanthroline lead(II). Crystals from water are triclinic, space group $P\bar 1$ (#2),a=10.53(2) Å,b=11.050(12)Å,c=24.74 (3) Å, α=94.71 (9)0, β=98.15(11)o, γ=114.11(9)o,V=2569(6) Å3,Z=2. Each lead atom has approximate pentagonal pyramid coordination geometry through the nitrogens of a phenathroline and sulfurs of two dithiocarbamates. Additionally, complexes form loose dimers in which lead atoms are weakly coordinated to a sulfur in an adjacent complex. IR and proton nmr spectrum of the complex are consistent with the solid state structure.  相似文献   

20.
Polycrystalline samples in the ternary system La2Mo2O9-Sm2W2O9-Sm2Mo2O 9 + were synthesized in air. The region of the existence of compounds with the lanthanum molybdate (La2Mo2O9) structure in this system was determined. The polymorphism of the synthesized compounds was studied. Doping with samarium or with samarium and tungsten was shown to lead to the suppression of the transition between the monoclinic and cubic phases α → β and the appearance of the transition β ms → β between two cubic phases. In samples with a high samarium content, the phase transition β ms → β manifests itself as significant anomalies in the temperature dependences of the dielectric permeability and electric conductivity. An increase in the concentration of samarium in the samples leads to a substantial decrease in the conductivity compared with the nondoped compound La2Mo2O9.  相似文献   

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