GdPO4·nH2O∶Eu3+发光粉的水热合成及发光性能研究

漆加兴, 马晶, 李艳红*

化工新型材料 ›› 2023, Vol. 51 ›› Issue (9) : 151 -155.

PDF
化工新型材料 ›› 2023, Vol. 51 ›› Issue (9) : 151-155. DOI: 10.19817/j.cnki.issn1006-3536.2023.09.028
新材料与新技术

GdPO4·nH2O∶Eu3+发光粉的水热合成及发光性能研究

    漆加兴, 马晶, 李艳红*
作者信息 +

Hydrothermal synthesis and luminescence properties of GdPO4·nH2O∶Eu3+ phosphors

  • Qi Jiaxing, Ma Jing, Li Yanhong
Author information +
文章历史 +
PDF

摘要

采用水热法制备系列GdPO4·nH2O∶Eu3+发光粉,通过X射线衍射(XRD)、扫描电子显微镜(SEM)、荧光光谱等分析方法对样品的结构、形貌和发光性能进行表征。研究了初始溶液pH、水热反应温度和反应时间等对发光粉的结构和发光性能的影响。XRD和SEM分析结果表明,合成的样品均为六方结构的GdPO4·nH2O,发光粉均为棒状形貌。pH对GdPO4·H2O∶Eu3+的结构和形貌有一定影响。激发光谱研究结果表明,激发带主要来自于Eu-O的电荷迁移带,发射光谱的主发射峰来自于 5D07F1磁偶极跃迁。不同pH条件下合成的样品,由于Eu3+离子周围局域环境的不同而导致电荷迁移带和发射峰相对强度有所不同。水热反应温度和时间也影响Eu3+离子的周围局域环境。

Abstract

A series of GdPO4·nH2O∶Eu3+ phosphors were prepared by hydrothermal method.The structure,morphology and luminescence properties of the samples were characterized by X-ray diffraction,scanning electron microscopy and fluorescence spectroscopy.The effects of pH values of initial solution,hydrothermal reaction temperature and reaction time on the structure and luminescence properties of phosphors were studied.The results of XRD and SEM indicated that the synthesized samples were all hexagonal structured GdPO4·nH2O and the phosphors were all rod-shaped.The pH value of initial solution had a certain effect on the structure and morphology of GdPO4·nH2O∶Eu3+.The excitation spectra showed that excitation band originated from change transfer band of Eu-O,and the main emission peak was from 5D07F1 magnetic dipole transition.The change transfer bands and relatively luminescence intensity patterns of emission were different for the samples synthesized under different initial pH conditions due to the different local environment around Eu3+ ions.The temperature and time of hydrothermal reaction also affected the local environment around Eu3+ ions.

关键词

水热法 / GdPO4·nH2O∶Eu3+ / 发光粉 / 发光 / 局域环境

Key words

hydrothermal method / GdPO4·nH2O∶Eu3+ / phosphors / luminescence / local environment

引用本文

引用格式 ▾
GdPO4·nH2O∶Eu3+发光粉的水热合成及发光性能研究[J]. 化工新型材料, 2023, 51(9): 151-155 DOI:10.19817/j.cnki.issn1006-3536.2023.09.028

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] 刘运,赵高杨,郭雅欣,等.YPO4·nH2O∶Eu3+(n=0,0.8)的水热合成及发光性能[J].功能材料,2014,17(45):17066-17069.
[2] 刘荣辉,刘元红,陈观通.稀土发光材料亟需技术和应用双驱协同创新[J].发光学报,2020,41(5):502-506.
[3] 高存津,任杰,王纪刚,等.稀土发光材料的制备及其在印刷包装防伪中的应用[J].包装工程,2022,43(3):32-41.
[4] 张松涛,王樱蕙,张洪杰.稀土发光材料在近红外二区成像中的应用[J].发光学报,2020,41(12):1460-1478.
[5] 周国永,梁旭阳,赵宇,等.稀土掺杂上转换发光生物医用纳米材料的研究进展[J].材料科学与工程学报,2020,38(4):680-692.
[6] 许晓玉,王蒙,林琳,等.稀土发光材料在染料敏化太阳能电池中的研究进展[J].材料导报,2015,29(1):61-65.
[7] Xu B X,Song C,Song J,et al.Effect of Rb+ doping on tunable luminescence in Yb3+/Er3+-Y2O3 film[J].Coatings,2020,10,1137:1-11.
[8] 李大光,刘世虎,兰民,等.Ca2+掺杂对NaYF4∶Yb,Er微米晶上转换发光性能的影响[J].发光学报,2015,36(1):45-49.
[9] Dong X R,Cui X Y,Fu Z L,et al.Study on preparation and luminescent properties of Eu3+-doped LaAlO3 and GdAlO3[J].Materials Research Bulletin,2012,47:212-216.
[10] Lu S Z,Zhang J H,Zhang J S,et al.Laser spectroscopy of GdPO4·nH2O∶Eu nanomaterials[J].Nanosci Nanotechnol,2016,16(4):3613-3616.
[11] De Sousa Filho P C,Alain J,Leménager G,et al.Colloidal rare earth vanadate single crystalline particles as ratiometric luminescent thermometers[J].The Journal of Physical Chemistry C,2019,123(4):2441-2450.
[12] Yuan H S,Wang K,Li S R,et al.Direct zircon-to-scheelite structural transformation in YPO4 and YPO4∶Eu3+ nanoparticles under high pressure[J].Phys Chem C,2012,116:24837-24844.
[13] De Sousa Filho P C,Serra O A.Reverse microemulsion synthesis,structure,and luminescence of nanosized REPO4∶Ln3+(RE=La,Y,Gd,or Yb,and Ln=Eu,Tm,or Er)[J].Phys Chem C,2011,115:636-646.
[14] Sahu N K,Singh N S,Ningthoujam R S,et al.Ce3+-sensitized GdPO4∶Tb3+ nanorods:an investigation on energy transfer[J].Luminescence Switching,and Quantum Yield,ACS Photonics,2014,1:337-346.
[15] Zhang L H,Yin M L,You H P,et al.Mutifuntional GdPO4∶Eu3+ Hollow spheres:synthesis and magnetic and luminescent properties[J].Inorg Chem,2011,50:10608-10613.
[16] Rodriguez-Liviano S,Becerro A I,Alcántara D,et al.Synthesis and properties of multifunctional tetragonal Eu∶GdPO4 nanocubes for optical and magnetic resonance imaging applications[J].Inorg Chem,2013,52:647-654.
[17] Li Y C,Chen T,Tan W H,et al.Size-dependent MRI relaxivity and dual imaging with Eu0.2Gd0.8PO4·H2O nanoparticles[J].Langmuir,2014,30:5873-5879.
[18] Song H J,Zhou L Q,Li L,et al.Hydrothermal synthesis,characterization and luminescent properties of GdPO4·H2O∶Tb3+ nanorods and nanobundles[J].Materials Research Bulletin,2013,48:5013-5018.
[19] Lu S Z,Zhang J H,Zhang J S,et al.Remarkably enhanced photoluminescence of hexagonal GdPO4·nH2O∶Eu with decreasing size[J].Nanotechnology,2010(21):365709.
[20] 李艳红,洪广言.纳米GdPO4∶Eu3+的合成和光谱特性[J].发光学报,2005,26(5):587-590.
[21] 胡正发,孟涛,张伟,等.Dy3+离子掺杂的全色荧光粉Ca9La(PO4)7的制备及发光特性[J].物理化学学报,2013,29(10):2271-2275.
[22] 刘成露,贾佩云,王芳.GdPO4∶Eu纳米棒束的熔盐合成及其发光性能研究[J].稀有金属材料与工程,2012,41(S2):149-152.
[23] Becerro A I,Rodriguez-Liviano S,Fernández-Carrión A J,et al.A novel 3D architecture of GdPO4 nanophosphors:multicolored and white light emission[J].Crystal Growth & Design,2013,13(2):526-535.
[24] Zhang H F,Hou S M,Wang T,et al.Realization of pressure induced emission enhancement for rare earth luminescent materials:adopting delta-doped structure[J].Journal of Alloys and Compounds,2021,859(5):157882.
[25] 许春华,欧阳春发,贾润萍,等.聚偏二氟乙烯/(Y0.97Eu0.03)2O3稀土氧化物纳米复合材料制备、形貌及发光性能[J].发光学报,2008,29(5):779-783.
[26] A Nguyen T,T Nguyen T L,X Bui V.Influence of the synthetic conditions on the crystal structure,magnetic and optical properties of holmium orthoferrite nanoparticles[J].Journal of Materials Science:Materials in Electronics,2021,32:19010-19019.
[27] Zhang Y J,Guan H M.Hydrothermal synthesis and characterization of hexagonal and monoclinic CePO4 single-crystal nanowires[J].Journal of Crystal Growth,2003,256:156-161.
[28] 洪广言,刘桂霞,李艳红,等.稀土光功能材料[M].北京:科学出版社,2021.

基金资助

辽宁省教育厅科学技术研究项目(LJ2019002)

AI Summary AI Mindmap
PDF

522

访问

0

被引

导航
相关文章

AI思维导图

/