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Europium orthophosphate monohydrate (EuPO4.H2O) nanorods with typical dimensions of about 10-30 nm in diameter and 300-500 nm in length were prepared by using the soft template method.The effects of using diethylene glycol (DEG) and polyethylene glycol (PEG) polymers as well as the pH values on the size,crystalline structure and morphology of EuPO4·H2O nanorods were investigated.Field emission scanning electron microscopy (FESEM) and X-ray diffiaction (XRD) data of the prepared samples were elucidated.The nanorods were highly uniform and their mean length was reduced by using DEG and PEG as soft template agents.For all prepared samples,the rhabdophane-type hexagonal EuPO4·H2O was the dominated phase.The photoluminescence (PL) spectroscopy measurements of EuPO4·H2O nanorods revealed that,under UV excitation,EuPO4·H2O nanorods exhibited strong luminescence with narrow bands corresponding to the intra-4f transitions of 5D0→7Fj (j=1,2,3,4) of Eu3+ ions.The peaks were found at 594 nm (5D0→7F1),619 nm (5D0→7F2),652 nm (5D0→7F3),and 697 nm (5D0→7F4),with the strongest emission at 594 nm.

参考文献

[1] Yu L X;Liu H.The progress of photoluminescent properties of rare-earth-ions-doped phosphate one dimensional nanocrystals[J].Journal of Nanomaterials,2010
[2] Feng Wang;Wee Beng Tan;Yong Zhang .Luminescent nanomaterials for biological labelling[J].Nanotechnology,2006(1):R1-R13.
[3] Mei Yang;Hongpeng You;Yanhua Song .Synthesis and Luminescence Properties of Sheaflike TbPO4 Hierarchical Architectures with Different phase Structures[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(47):20173-20177.
[4] Cho I S;Choi G K;An J S;Kim J Hong K S .Sintering,microstructure and microwave dielectric properties of rare earth orthophosphates,RePO4 (Re=La,Ce,Nd,Sm,Tb,Dy,Y,Yb)[J].Materials Research Bulletin,2009,44:173.
[5] Yang, J;Li, GG;Peng, C;Li, CX;Zhang, CM;Fan, Y;Xu, ZH;Cheng, ZY;Lin, J .Homogeneous one-dimensional structured Tb(OH)(3):Eu3+ nanorods: Hydrothermal synthesis, energy transfer, and tunable luminescence properties[J].Journal of Solid State Chemistry,2010(2):451-457.
[6] Wong KL;Law GL;Murphy MB;Tanner PA;Wong WT;Lam PKS;Lam MHW .Functionalized europium nanorods for in vitro imaging[J].Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics,2008(12):5190-5196.
[7] Chitta Ranjan Patra;Resham Bhattacharya;Sujata Patra .Inorganic phosphate nanorods are a novel fluorescent label in cell biology[J].Journal of Nanobiotechnology,2006(11):1-15.
[8] Feng J.;Shan GM.;Maquieira A.;Koivunen ME.;Guo B.;Hammock BD. Kennedy IM. .Functionalized europium oxide nanoparticles used as a fluorescent label in an immunoassay for atrazine[J].Analytical chemistry,2003(19):5282-5286.
[9] Misra S N;Gagnani M A;Devi I M;Shukla R S .Biological and clinical aspects of lanthanide coordination compounds[J].Bioinorganic Chemistry and Applications,2004,2:155.
[10] Wang X;Gao M A .Facile route for preparing rhabdophane rare earth phosphate nanorods[J].Journal of Materials Chemistry,2006,16:1360.
[11] Patra C R;Alexandra G;Patra S;Jacob D S Gedanken A Landau A Gofer Y .Microwave approach for the synthesis of rhabdophane-type lanthanide orthophosphate (Ln=La,Ce,Nd,Sm,Eu,Gd and Tb) nanorods under solvothermal conditions[J].New Journal of Chemistry,2005,29:733.
[12] Tan F;Wang Z;Yao L;Cai W Li X .Synthesis of Tb(OH)3nanowire arrays via a facile template-assisted hydrothermal approach[J].Nanotechnology,2006,17:1079.
[13] Bao J;Yu R;Zhang J;Yang X Wang D Deng J Chen J Xing X .Controlled synthesis of terbium orthophosphate spindle-like hierarchical nanostructures with improved photoluminescence[J].European Journal of Inorganic Chemistry,2009,16:2388.
[14] Xiong D B;Zhang Z J;Gulay L D;Tang M B Chen H H Yang X X Zhao J T .Hydrothermal synthesis,crystal structure and physical properties of a new gadolinium phosphite hydrate[J].Inorganica Chimica Acta,2009,362:3013.
[15] Beaurepaire E;Buissette V;Sauviat MP;Giaume D;Lahlil K;Mercuri A;Casanova D;Huignard A;Martin JL;Gacoin T .Functionalized fluorescent oxide nanoparticles: Artificial toxins for sodium channel targeting and Imaging at the single-molecule level[J].Nano letters,2004(11):2079-2083.
[16] Huong T T;Anh T K;Minh L Q .Fabrication and properties of highly luminescent materials from Tb(OH)3@SiO2 and Tb(OH)3@SiO2:Eu3+ nanotubes[J].Institute of Physics Conference Series,2009,187:012064.
[17] Minh L Q;Endo T;Huong T T;N T Huong Giang L T K Tuyen L D Loc D X Anh T K .Synthesis,structures and properties of emission nanomaterials based on lanthanide oxides and mix oxides[J].Transaction MRS Japan,2010,35:6417.
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