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综述了三(8-羟基喹啉)铝(Alq3)的5种结晶相(α,β,γ,δ,和ε)的的制备方法以及这五相之间的相互转变.阐述了Alq3的两种异构体(fac-Alq3和mer-Alq3)的相互转变和存在条件,研究表明:由于室温下fac-Alq3在溶液中很不稳定,所以很难被检测到,其只能在低温下存在,并随着温度的升高逐渐向mer-Alg3转变.归纳了Alq3的5种结晶相的不同结晶形式和晶体结构.并对比了这5种结晶相在固态和溶液中的光致发光光谱.发现不同结晶相的荧光峰值波长不同,并分布在466-515 nm之间.最后简述了Alq3合成过程中的化学老化机制:在水和氧气存在的情况下,Alq3易水解进而发生氧化缩合,因此在制备Alq3的过程中需要在无水无氧的条件下进行.

参考文献

[1] Tang C W;VanSlyke S A .Organic electrolumineacent diodes[J].Applied Physics Letters,1987,51:913.
[2] Tang C W;Vanslyke S A;Chen C H .Electmluminescence of doped organic thin films[J].Journal of Applied Physics,1989,65:3610.
[3] Middleton A J;Marshall W J;Badu N S .Elucidation of the etnrcture of a highly efficient blue electrolumineecent material[J].Journal of the American Chemical Society,2003,125(04):880.
[4] Zhaog J;Frenking G .Quantum chemical analysis of the chemi-cal bonds in tris(8-hydroxyquinlinato)aluminum as a key emit-ting material for OLED[J].Journal of Physical Chemistry A,2004,108(46):10296.
[5] Li J;Sano T;Hirayama Y;Tomita T;Fujii H;Wakisaka K .Multilayer green polymer light emitting diodes with improved efficiency and lifetime[J].Journal of Applied Physics,2006(3):34506-1-34506-5-0.
[6] Grozea D;Turak A;Yuan Y .Enhanced thermal stability in or-ganic light-emitting diodes thmugh nanocomposite buffer layers at the anode/organic interface[J].Journal of Applied Physics,2007,101(03):033522.
[7] Jung Y;Wang J;Yu J .High-efficiency white organic light-e-milting devices based on phosphorescent iridium complex and NPB emitters[J].Japanese Journal of Applied Physics,2007,46(02):523.
[8] Paris M J;Hon S H;Kim Y S;Jo S Y,Ko K Y,Koh K H,Lee S .Optical characterirstion of a new soluble Alq3 derivative hav-ing a 5-alkyl group[J].Journal of Physics D: Applied Physics,2009,42(14):145110.
[9] 赵科,罗新宇,崔向中,夏天,鱼志坚,赵春雷,何涛,Zhuang Weidong,庄卫东.CCFL荧光粉的现状及其发展趋势[J].稀有金属,2008(02):245-251.
[10] 徐会兵,庄卫东,夏天,刘荣辉,陶冶,黄艳.PDP用(Y,Gd)BO3:Tb3+绿色荧光粉的合成及性能研究[J].稀有金属,2010(06):887-892.
[11] 张义,高中良,陈永生,李煦.MnO2/γ-Al2O3催化剂上3-戊酮的合成研究[J].稀有金属,2010(04):574-577.
[12] 张凯,刘河洲,胡文彬.白光LED用荧光粉的研究进展[J].材料导报,2005(09):50-53.
[13] 李文连 .有机电致发光发射材料用金属络合物研究[J].功能材料,1997,28(02):109.
[14] Curioni A.;Andreoni W.;Boero M. .Alq(3): ab initio calculations of its structural and electronic properties in neutral and charged states[J].Chemical Physics Letters,1998(4-5):263-271.
[15] Martin R;Kress J;Campbell I;Smith D .Molecular and solid-state properties of tris-(8-hydroxyquinolate)-aluminum[J].Physical Review B,2000,61:15804.
[16] Amati M;Lelj F .Are UV-Vis and luminescence spectra of Alq3[aluminum tris(8-hydroxy quinolinate)]8-phase compatible with the presence of the fac-Alq3 isomer? A TD-DFT investigation[J].Phytochemistry Letters,2002,358:144.
[17] Alessandro C;Mauro B;Wanda A .Alq3:Ab Initio calculations of its structural and electronic properties in neutral and charged states[J].Chemical Physics Letters,1998,294(18):263.
[18] Brinkmann M;Gadret G;Muccini M;Taliani C,Masciocchi N,Sironi A .Correlation between molecular packing and optical properties in different crystalline polymorphs and amorphous thin films of mer-tris(8-hydorxyquinoline)aluminum(Ⅲ)[J].Journal of the American Chemical Society,2000,122:5147.
[19] Braun M;Gmeiner J;Tzolov M;Coelle M,Meyer F,Milius W,Hillebrecht H,Wendland O,Von Schtttz J U,Brtttting W .A new crystalline phase of the electroluminescent material tris(8-hydroxyquinoline) aluminum exhibiting blueshifted fluorescence[J].Journal of Chemical Physics,2001,114:9625.
[20] Colle Michael;Robert E Dinnebier;BrUtting Wolfgeng .The structure of the blue luminescent δ-phase of tris(8-hydroxyquino-line)aluminium(Ⅲ)(Alq3)[J].Chemical Communications,2002,5:2908.
[21] Colle M;Gmeiner J;Milius W;Hillebrecht H,BrüOtting W .Preparation and characterization of blue-luminescent tirs(8-hydroxyquinoGne)aluminum(Alq3)[J].Advanced Functional Materials,2003,13(02):108.
[22] Rajeswaran Manju;Bhmton Thomas N;Young Ralph H;Bren-nessel William .Modeling disorder in the crystal structure of the α polymorph d' Alq3[J].Journal of Chemical Crystallography,2010,40:195.
[23] Rajeswaran M;Blanton T N;Klubek K .Refinement of the crystal stncture of the delta-modification of tris(8-hydroxyquino-line)aluminum(Ⅲ),delta-Al(C9H6NO)(3),the blue lumi-neecent Alq3[J].Zeitschrift für Kristallographie-New Crystal Structures,2003,218:439.
[24] Rajeewararr M;Blanton T N .Single-crystal structure detemrina-tion of a polymorph(ε-Alq3)of the electrolumineecence OLED(organic light-emitting diode)material,tris(8-hydroxyquinoline)aluminum(Alq3)[J].Journal of Chemical Crystallography,2005,33(01):71.
[25] Ul-Haque M;Home W;Lyle W J;Cryetallogr J Spectroec Res .Crystal and molecuhv etrueture of tris-(8-quinolinolato)alumin-ium(Ⅲ)containing occluded acetanyhrcetone[J].Journal of Chemical Crystallography,1991,21(04):411.
[26] Fujii I;Hirayama N;Ohtani J;Kodama K .Crystal structure of tris(8-quinolinolato)aluminum(Ⅲ)-ethylacetate(1/0.5)[J].Analytical Sciences,1996,12:153.
[27] Schmidbaur H;Letrenbauer J;Wilkineon D L;Muller G,Kum-berger O,Naturforoch Z .Model systems for gallium extraction:I.Structure and molecular dynamics of aluminium and gallium trie(oxinatee)[J].B:Chem Sei,1991,46(07):901.
[28] Mucchini M;Loi M A;Kenevey K;Zamboni R,Masciocchi N,Sironi A .Blue luminescence of facial trie(quinolin-8-olato)alu-minum(Ⅲ)in solution[J].Crystals and Thin Films Adv Mater,2004,16:861.
[29] Kaji, H;Kusaka, Y;Onoyama, G;Horii, F .CP/MAS C-13 NMR characterization of the isomeric states and intermolecular packing in tris(8-hydroxyquinoline) aluminum(III) (Alq(3))[J].Journal of the American Chemical Society,2006(13):4292-4297.
[30] Colle M.;Forero-Lenger S.;Gmeiner J.;Brutting W. .Vibrational analysis of different crystalline phases of the organic electroluminescent material aluminium tris(quinoline-8-olate) (Alq(3))[J].Physical chemistry chemical physics: PCCP,2003(14):2958-2963.
[31] Rajeswaran Manju;Bhmton Thomas N;Tang Ching W;L.enhart William C,Switalski Steven C,Giesen David J,Antalek Brian J,Pawlik Thomas D,Kondakov Denie Y,Nicholas Zumbulyadis,Young Ralph H .Stnrctural,thermal,and spectral characteriza-tion of the differont crystalline forms of Alq3,tris(quinolin-8-ola-to)aluminum(Ⅲ),an electroluminescent material in OLED tech-nology[J].Polyhedron,2009,28:835.
[32] 李海蓉,张福甲,郑代顺.有机电致发光材料8-羟基喹啉铝的结构表征[J].发光学报,2003(01):44-50.
[33] 吕青竹.晶体8-羟基喹啉铝的合成及光致和电致发光性能[J].当代化工,2009(01):13-16.
[34] 卫芳芳,王华,徐阳,侯建新,周禾丰,许并社.8-羟基喹啉金属配合物的制备与提纯[J].人工晶体学报,2009(03):756-760,776.
[35] 费进波,田熙科,赵科雄,皮振邦.8-羟基喹啉铝的制备工艺改进及其老化[J].化工进展,2006(01):51-53.
[36] 刘爱云,陶绪堂,蒋民华,邹德春,啜玉涛.一种制备8-羟基喹啉铝的新方法[J].功能材料,2004(z1):249-251.
[37] Saxena A K .Solid state preparation of the(8-hydroxyquinolina-to)aluminum(Ⅲ)complex from aluminwn isoproporide and 8-hydroxyquinoline[J].Synthesis and Reactivity in Inorganic Metal-Organic and Nano-Metal Chemistry,1999,29:1747.
[38] 许并社;王华;郝玉英;周禾丰,李洁,阮丽敏 .发蓝光的8-羟基喹啉铝及制备方法[P].中国,200410012430.1,2005.
[39] Utz M.;Chen CQ.;Morton M.;Papadimitrakopoulos F. .Ligand exchange dynamics in aluminum tris-(quinoline-8-olate): A solution state NMR study[J].Journal of the American Chemical Society,2003(5):1371-1375.
[40] Katakura R;Koide Y .Configuration-specific synthesis of the facial and meridional isomers of tris(8-hydroxyquinolinate)aluminum (Alq(3))[J].Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics,2006(15):5730-5732.
[41] Higginson Keith A;Zhang Xianman;Fotios Papadimitrakopoulos .Thermal and morphological effects on the hydrolytic stability of a-luminum tris(8-hydroxyquinoline)(Alq3)[J].Chemistry of Materials,1998,10:1017.
[42] Colle M;Gmeiner J;Milius W;Hillebrecht H,Briltting W .Preparation and characterisation of blue-luminescent tirs(8-hydroxyquirwline)aluminum(Alq3)[J].Adv Fwua Mater,2003,13(02):108.
[43] Hironori Kaji;Yasunari Kusaka;Goro Onoyama;Fumitaka Horii .CP/MAS ~(13)C NMR Characterization of the Isomeric States and Intermolecular Packing in Tris(8-hydroxyquinoline) Aluminum(III) (Alq_3)[J].Journal of the American Chemical Society,2006(13):4292-4297.
[44] Bunows P E;Bulovic V;Forrest S R;Sapochak L S,McCarthy D M,Thompson M E .Metal ion dependent luminescence effects in metal tris-quinolate organic heterojunction light emitting devices[J].Applied Physics Letters,1994,65:2922.
[45] Ketsuta S .Fluorescence enhancement of aluminum(Ⅲ)8-quinolinohue in the presence of 3,5-dichlorophenol[J].Chemistry Letters,1994,23(07):1239.
[46] Adachi C;Nagai K;Tamoto N .Molecular design of hole trans-port materials for obtaining high durability in organic electrolumi-nascent diodes[J].Applied Physics Letters,66:2679.
[47] Papadimitralcopoulos F;Zhang X M;Thomeen D L .A chemical failure mechanism for aluminum(Ⅲ)8-hydmxyquinoline light-e-milting devices[J].Chemistry of Materials,1996,8:1363.
[48] Yu G.;Liu YQ.;Zhu DB.;Shen DZ. .Fluorescence stability of 8-hydroxyquinoline aluminum[J].Chemical Physics Letters,2001(3-4):207-211.
[49] Yu Gui;Shen Dezhen;Liu Yungi;Zhu Daoben .Photadegrada-tion of 8-hydroxyquinolin aluminum[J].Synthetic Metals,2001,121:1433.
[50] 于贵,刘云圻,朱道本.8-羟基喹啉铝的老化研究[J].功能材料,2002(02):142-144.
[51] Phillips J P .The reactions of 8-quinolinol the reactions of 8-quinolinol[J].Chemical Reviews,1956,56(02):271.
[52] Papadimitralcopoulos P;Zhang X M;Higginson K A .Effects in light-emitting devices[J].IEEE J Sel Top Quart Electron,1998,4(01):49.
[53] Higginson KA.;Papadimitrakopoulos F.;Zhang XM. .Thermal and morphological effects on the hydrolytic stability of aluminum tris(8-hydroxyquinoline) (Alq(3))[J].Chemistry of Materials,1998(4):1017-1020.
[54] Woo Cce S;Bawendi M W K;Bulovi V .Electroluminescence from single monolayers of nancerystals in molecular organic de-vices[J].Nature,2002,420:800.
[55] Baldo M A;Thompson M E;Foment S R .High-efficiency fluo-rescent organic light-emitting devices using a phosphorescent sen-sitizer[J].Nature,2000,403:750.
[56] Baldo M A;O'Brien D F;You Y;Shoustilcov A Sibley S Thompson M E Fonrest 5 R .Highly efficient phosphorescent e-mission from organic electroluminescent deviccee[J].Nature,1998,395:151.
[57] Korlov V G;Buloviae V;Burrows P E;Forrest S R .Laser ac-tion in organic semiconductor waveguide and double-heteroetruc-ture devices[J].Nature,1997,389:362.
[58] Bulovic' V;Kozlov V G;Kha1Sn V B;Foment S R .Transform-limited,narrow-linewidth lasing action in organic semiconductor microcavities science[J].Science,1998,279:553.
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