无机盐工业 ›› 2022, Vol. 54 ›› Issue (9): 39-46.doi: 10.19964/j.issn.1006-4990.2022-0026
卢杨1,2(),王晶2(
),赫丽杰1(
),王复栋1,张家铭1
收稿日期:
2022-01-10
出版日期:
2022-09-10
发布日期:
2022-09-22
作者简介:
卢杨(1986— ),男,在读博士,讲师,研究方向为稀土发光材料;E-mail:基金资助:
LU Yang1,2(),WANG Jing2(
),HE Lijie1(
),WANG Fudong1,ZHANG Jiaming1
Received:
2022-01-10
Published:
2022-09-10
Online:
2022-09-22
摘要:
镁铝尖晶石作为一种有前途的绿色环保型无机功能材料,凭借其优良的性能和低廉的价格等特点而受到广泛关注。在总结镁铝尖晶石基本结构和特点的基础上,对镁铝尖晶石粉体的主要制备方法及其在发光材料领域的研究进展进行了综述。相比于传统固相法和燃烧法,液相法中的环保型水热合成技术在制备特殊形貌的纳米级镁铝尖晶石功能粉体方面具有优势。此外,分析了稀土、过渡元素离子掺杂镁铝尖晶石(MgAl2O4)发光材料的荧光性能特点,指出稀土掺杂镁铝尖晶石的上转换发光尚待深入研究,以适应其在生物医学中的应用;过渡元素离子掺杂镁铝尖晶石发光材料,则凭借其鲜艳的色彩表现有望作为一种有前途的固体激光材料。
中图分类号:
卢杨,王晶,赫丽杰,王复栋,张家铭. 镁铝尖晶石粉体制备及其在发光材料领域的研究进展[J]. 无机盐工业, 2022, 54(9): 39-46.
LU Yang,WANG Jing,HE Lijie,WANG Fudong,ZHANG Jiaming. Research progress on preparation of magnesium aluminate spinel powders and it in field of luminescent material[J]. Inorganic Chemicals Industry, 2022, 54(9): 39-46.
[1] | 杨晓红.MgAl2O4:Ce荧光粉辐照合成及发光机理研究[J].无机盐工业,2019,51(9):30-35. |
YANG Xiaohong.Irradiation synthesized and photoluminescence mechanism of MgAl2O4:Ce phosphor[J].Inorganic Chemicals Industry,2019,51(9):30-35. | |
[2] | LU Yang, WANG Jing, SHI Zhongxiang, et al.Site occupation and fluorescence properties of MgAl2O4:Eu3+ phosphors[J].Materials Science in Semiconductor Processing,2022,137.Doi:10.1016/j.mssp.2021.106233. |
[3] | GANESH I.A review on magnesium aluminate(MgAl2O4) spinel:Synthesis,processing and applications[J].International Materials Reviews,2013,58(2):63-112. |
[4] | 李人骏,张玲,郑培毓.电熔MgAl2O4对Al2O3-MgAl2O4复合耐火材料高温蠕变性能的影响[J].复合材料学报,2022,39(1):285-291. |
LI Renjun, ZHANG Ling, ZHENG Peiyu.Effect of fused MgAl2O4 on high temperature creep properties of Al2O3-MgAl2O4 refracto⁃ry[J].Acta Materiae Compositae Sinica,2022,39(1):285-291. | |
[5] | SCHMOCKER U, BOESCH H R, WALDNER F.A direct determination of cation disorder in MgAl2O4 spinel by ESR[J].Physics Letters A,1972,40(3):237-238. |
[6] | MORITA K, KIM B N, YOSHIDA H, et al.Spectroscopic study of the discoloration of transparent MgAl2O4 spinel fabricated by spark⁃plasma⁃sintering(SPS) processing[J].Acta Materialia,2015,84:9-19. |
[7] | 段锦霞,王修慧,高宏,等.非化学计量比镁铝尖晶石粉体的制备及性能[J].硅酸盐学报,2019,47(3):370-375. |
DUAN Jinxia, WANG Xiuhui, GAO Hong, et al.Preparation and property of non⁃stoichiometric magnesium aluminum spinel powder[J].Journal of the Chinese Ceramic Society,2019,47(3):370-375. | |
[8] | PATHAK N, GHOSH P S, GUPTA S K, et al.An insight into the various defects⁃induced emission in MgAl2O4 and their tunability with phase behavior:Combined experimental and theoretical approach[J].The Journal of Physical Chemistry C,2016,120(7):4016-4031. |
[9] | 武小娟,李俊寿,王明远,等.镁铝尖晶石粉体的制备方法[J].兵器材料科学与工程,2015,38(3):136-139. |
WU Xiaojuan, LI Junshou, WANG Mingyuan, et al.Preparation methods of magnesia⁃alumina spinel powder[J].Ordnance Material Science and Engineering,2015,38(3):136-139. | |
[10] | 陈鹏起,台运霄,程继贵.溶液燃烧法制备Mo-La2O3纳米粉体及烧结性能的研究[J].粉末冶金技术,2021,39(3):203-208. |
CHEN Pengqi, TAI Yunxiao, CHENG Jigui.Study on the sintering properties of Mo-La2O3 nano⁃powders prepared by solution combustion method[J].Powder Metallurgy Technology,2021,39(3):203-208. | |
[11] | 班丽萍,马民.CuAl2O4和CuAl2O4:Cr荧光粉的合成及发光机理研究[J].无机盐工业,2022,54(1):56-61. |
BAN Liping, MA Min.Study on synthesis and photoluminescence mechanism of CuAl2O4 and CuAl2O4:Cr phosphors[J].Inorganic Chemicals Industry,2022,54(1):56-61. | |
[12] | 袁标,吴巍,罗超,等. b轴取向MFI分子筛膜的制备及应用研究进展[J].无机盐工业,2021,53(12):54-60. |
YUAN Biao, WU Wei, LUO Chao, et al.Research progress on preparation and application of b-axis oriented MFI zeolite membranes[J].Inorganic Chemicals Industry,2021,53(12):54-60. | |
[13] | BOCANEGRA S A, BALLARINI A D, SCELZA O A, et al.The influence of the synthesis routes of MgAl2O4 on its properties and behavior as support of dehydrogenation catalysts[J].Materials Chemistry and Physics,2008,111(2/3):534-541. |
[14] | 王修慧,曹冬鸽,赵明彪,等.固相反应法制备高纯镁铝尖晶石粉体[J].大连交通大学学报,2008,29(1):105-108. |
WANG Xiuhui, CAO Dongge, ZHAO Mingbiao, et al.Preparation of high⁃purity spinel powders by solid state reaction[J].Journal of Dalian Jiaotong University,2008,29(1):105-108. | |
[15] | 李友芬,秦奕鸿,刘莉莉.助熔剂对固相微波法合成MgAl2O4∶Eu发光性能的影响[J].硅酸盐通报,2014,33(5):1023-1027. |
LI Youfen, QIN Yihong, LIU Lili.Influence of fluxes on luminescent properties of MgAl2O4:Eu synthesized by solid⁃state microwave method[J].Bulletin of the Chinese Ceramic Society,2014,33(5):1023-1027. | |
[16] | 郭华强,张鑫,朱冠宇,等.微波固相法与常规高温固相法制备镁铝尖晶石粉体的对比研究[J].陶瓷学报,2014,35(5):507-511. |
GUO Huaqiang, ZHANG Xin, ZHU Guanyu, et al.A comparative study on synthesis of MgAl2O4 by microwave sintering and conventional sintering[J].Journal of Ceramics,2014,35(5):507-511 | |
[17] | PĂCURARIU C, LAZĂU I, ECSEDI Z, et al.New synthesis methods of MgAl2O4 spinel[J].Journal of the European Ceramic Society,2007,27(2/3):707-710. |
[18] | RAFIAEI S M, SHOKOUHIMEHR M.Effect of fuels on nanostructure and luminescence properties of combustion synthesized MgAl2O4:Eu3+ phosphors[J].Journal of Molecular Structure,2019,1193:274-279. |
[19] | RAFIAEI S M, KIM A, SHOKOUHIMEHR M.Effect of solvent on nanostructure and luminescence properties of combustion synthesized Eu3+ doped yttria[J].Nanoscience and Nanotechnology Letters,2014,6(8):692-696. |
[20] | HE Qing, YU Jun, ZHAO Huizhong.Synthesis of nanocrystalline MgAl2O4 spinel powder by microwave assisted combustion[J].Rare Metal Materials and Engineering,2015,44(S1):665-668. |
[21] | LEILA T, MOSTAFA M A, ZOHREH B.Synthesis of nano crystalline MgAl2O4 spinel powder by microwave assisted combusti⁃on[J].Journal of Inorganic Materials,2011,26(5):550-554. |
[22] | LI Jiguang, IKEGAMI T, LEE J H, et al.Synthesis of Mg-Al spinel powder via precipitation using ammonium bicarbonate as the precipitant[J].Journal of the European Ceramic Society,2001,21(2):139-148. |
[23] | RASHAD M M, ZAKI Z I, EL-SHALL H.A novel approach for synthesis of nanocrystalline MgAl2O4 powders by co⁃precipitation method[J].Journal of Materials Science,2009,44(11):2992-2998. |
[24] | 袁颖,张树人,游文南.铝单醇盐Sol-Gel法合成镁铝尖晶石纳米粉及烧结行为的研究[J].无机材料学报,2004,19(4):755-760. |
YUAN Ying, ZHANG Shuren, YOU Wennan.Aluminium semi⁃alkoxide sol-gel synthesis and sintering behavior of MgAl2O4spinel powder[J].Journal of Inorganic Materials,2004,19(4):755-760. | |
[25] | HABIBI N, WANG Yuan, ARANDIYAN H, et al.Low-temperature synthesis of mesoporous nanocrystalline magnesium aluminate(MgAl2O4) spinel with high surface area using a novel modified sol-gel method[J].Advanced Powder Technology,2017,28(4):1249-1257. |
[26] | TABAZA W A I, SWART H C, KROON R E.Luminescence of Ce doped MgAl2O4 prepared by the combustion method[J].Physica B:Condensed Matter,2014,439:109-114. |
[27] | MAIA A S, STEFANI R, KODAIRA C A, et al.Luminescent nanoparticles of MgAl2O4:Eu,Dy prepared by citrate sol-gel method[J].Optical Materials,2008,31(2):440-444. |
[28] | LI Hui, WEI Hengyong, CUI Yi, et al.Synthesis and characterisation of MgAl2O4 spinel nanopowders via nonhydrolytic sol-gel route[J].Journal of the Ceramic Society of Japan,2017,125(3):100-104. |
[29] | ZHANG Xin.Hydrothermal synthesis and catalytic performance of high⁃surface⁃area mesoporous nanocrystallite MgAl2O4 as catalyst support[J].Materials Chemistry and Physics,2009,116(2/3):415-420. |
[30] | CHEN Xiangying, MA Chao, ZHANG Zhongjie, et al.Structure and photoluminescence study of porous red⁃emitting MgAl2O4:Eu3+ phosphor[J].Microporous and Mesoporous Materials,2009,123(1/2/3):202-208. |
[31] | 马超.铝酸盐发光材料的控制合成与光学性能研究[D].合肥:合肥工业大学,2010. |
MA Chao.Research on controllable synthesis and photoluminescent properties of aluminates phosphors[D].Hefei:Hefei University of Technology,2010. | |
[32] | LEI Muyun, HUANG Cunxin, SUN Jialin.Effect of HIP on the properties and microstructure of transparent polycrystalline spinel[J].Key Engineering Materials,2007,336-338:1200-1202. |
[33] | 王程民,王修慧,田丁,等.镁铝尖晶石粉体的性能、制备与应用趋势[J].粉末冶金技术,2009,27(3):222-225,232. |
WANG Chengmin, WANG Xiuhui, TIAN Ding, et al.The progress of properties,preparation techniques and applications of magnesium aluminium spinel powders[J].Powder Metallurgy Technology,2009,27(3):222-225,232. | |
[34] | 隆金桥,刘真珍,颜锦,等.锂离子掺杂对Na2CaSiO4:Eu3+红色荧光粉能量增强作用研究[J].无机盐工业,2019,51(4):77-80. |
LONG Jinqiao, LIU Zhenzhen, YAN Jin, et al.Study on energy enhancement of Na2CaSiO4:Eu3+ red phosphor by Li+ doping[J].Inorganic Chemicals Industry,2019,51(4):77-80. | |
[35] | CHEN Cailing, LI Chunguang, SHI Zhan.Current advances in lanthanide⁃doped upconversion nanostructures for detection and bioapplication[J].Advanced Science,2016,3(10).Doi:10.1002/advs.201600029. |
[36] | OMKARAM I, RAO B V, BUDDHUDU S.Photoluminescence properties of Eu3+:MgAl2O4 powder phosphor[J].Journal of Alloys and Compounds,2009,474(1/2):565-568. |
[37] | MELATO L T, KOAO L F, MOTAUNG T E, et al.Effect of annealing temperature on the structure,morphology and photoluminescence properties of MgAl2O4:0.1% Eu3+ nanophosphor prepared by sol-gel method[J].Journal of Electronic Materials,2019,48(1):494-502. |
[38] | PANIGRAHI K, SAHA S, SAIN S, et al.White light emitting MgAl2O4:Dy3+,Eu3+ nanophosphor for multifunctional applications[J].Dalton Transactions,2018,47(35):12228-12242. |
[39] | MOTLOUNG S V, DEJENE B F, NTWAEABORWA O M, et al.Colour tuning and energy transfer pathways in MgAl2O4 triply doped with 0.1% Ce3+,0.1% Eu2+,x% Tb3+(0⩽x⩽2%) nanocrystals synthesized using sol-gel process[J].Chemical Physics, 2017,487:75-86. |
[40] | GUPTA S K, GHOSH P S, PATHAK N, et al.Why host to dopant energy transfer is absent in the MgAl2O4:Eu3+ spinel?And exploring Eu3+ site distribution and local symmetry through its photoluminescence:Interplay of experiment and theory[J].RSC Advances,2016,6(49):42923-42932. |
[41] | FAIZAN M, AHMAD S.Structural and spectroscopic properties of Li+ co⁃doped MgAl2O4:Eu3+ nanophosphors[C]//AIP Conferen⁃ ce Proceedings,2016,1731(1).Doi:10.1063/1.4947754. |
[42] | WIGLUSZ R J, GRZYB T, LUKOWIAK A, et al.Comparative studies on structural and luminescent properties of Eu3+:MgAl2O4 and Eu3+/Na+:MgAl2O4 nanopowders and nanoceramics[J].Optical Materials,2012,35(2):130-135. |
[43] | 孙祯.稀土掺杂上/下转换测温材料的制备与性能研究[D].长春:吉林大学,2020. |
SUN Zhen.Preparation and properties of rare⁃earth doped up/down conversion thermometric materials[D].Changchun:Jilin University,2020. | |
[44] | BLOEMBERGEN N.Solid state infrared quantum counters[J].Physical Review Letters,1959,2(3):84-85. |
[45] | SANDERS S, WAARTS R G, MEHUYS D G, et al.Laser diode pumped 106 mW blue upconversion fiber laser[J].Applied Physics Letters,1995,67(13):1815-1817. |
[46] | VETRONE F, NACCACHE R, ZAMARRÓN A, et al.Temperature sensing using fluorescent nanothermometers[J].ACS Nano,2010,4(6):3254-3258. |
[47] | WATRAS A, DEREŃ P J, PĄZIK R, et al.Upconversion luminescence properties of nanocrystallite MgAl2O4 spinel doped with Ho3+ and Yb3+ ions[J].Optical Materials,2012,34(12):2041-2044. |
[48] | MIRONOVA-ULMANE N, SARAKOVSKIS A, SKVORTSOVA V.Up⁃conversion and photoluminescence in Er3+ single crystal MgAl⁃spinel[J].Physics Procedia,2015,76:106-110. |
[49] | CHOUDHARY A K, DWIVEDI A, BAHADUR A, et al.Enhanced upconversion emission and temperature sensor sensitivity in presence of Bi3+ ions in Er3+/Yb3+ co⁃doped MgAl2O4 phosph⁃or[J].Ceramics International,2018,44(8):9633-9642. |
[50] | SUN Lingdong, WANG Yefu, YAN Chunhua.Paradigms and challenges for bioapplication of rare earth upconversion luminescent nanoparticles:Small size and tunable emission/excitation spectra[J].Accounts of Chemical Research,2014,47(4):1001-1009. |
[51] | GAI Shili, LI Chunxia, YANG Piaoping, et al.Recent progress in rare earth micro/nanocrystals:Soft chemical synthesis,luminescent properties,and biomedical applications[J].Chemical Reviews,2014,114(4):2343-2389. |
[52] | 卢杨,王晶,史忠祥,等.MgAl2O4∶Er3+,Yb3+荧光粉的制备及其上转换发光性能[J].无机化学学报,2020,36(4):688-694. |
LU Yang, WANG Jing, SHI Zhongxiang, et al.Preparation and upconversion luminescence properties of MgAl2O4∶Er3+,Yb3+ pho⁃sphors[J].Chinese Journal of Inorganic Chemistry,2020,36(4):688-694. | |
[53] | IZUMI K, MIYAZAKI S, YOSHIDA S, et al.Optical properties of 3d transition⁃metal⁃doped MgAl2O4 spinels[J].Physical Review B,2007,76(7).Doi:10.1103/PhysRevB.76.075111. |
[54] | Qinglin SAI, XIA Changtai, RAO Han, et al.Mn,Cr-co⁃doped MgAl2O4 phosphors for white LEDs[J].Journal of Luminescence,2011,131(11):2359-2364. |
[55] | HAO Yan, WU Kaipeng.Investigation of the structural,morphological and luminescence properties of MgAl2O4:Cr3+ nano powders[J].Journal of Materials Science:Materials in Electronics,2019,30(14):13151-13157. |
[56] | KATSUMATA T, MITOMI H, NAGAYAMA H, et al.Compositional variations in optical characteristics of Mn doped spinel crystals[J].Journal of Crystal Growth,2017,468:387-390. |
[57] | LUO Wei, PAN Yubai, LI Chaoyu, et al.Fabrication and spectral properties of hot⁃pressed Co:MgAl2O4 transparent ceramics for saturable absorber[J].Journal of Alloys and Compounds,2017,724:45-50. |
[58] | LIM J, KIM Y, KIM S, et al.Defects on the surface of Ti-doped MgAl2O4 nanophosphor[J].Nanoscale Research Letters,2017,12(1).Doi:10.1186/s11671-017-2288-1. |
[59] | 姚勇,郭锐.金属元素掺杂尖晶石型镓酸镁的研究进展[J].无机盐工业,2020,52(4):23-28. |
YAO Yong, GUO Rui.Research progress of metal element doped spinel type MgGa2O4 [J].Inorganic Chemicals Industry,2020,52(4):23-28. |
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