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介晶氧化锌作为一种新型的光电功能材料,具有独特的电学、光电学、光化学和催化性质,在传感器、高频发生器和光催化等领域具有广泛的应用前景.本文综述了近年来介晶氧化锌的制备方法,如溶剂热法、沉淀法、离子液体法、溶胶凝胶法等,总结了这些方法的优点与不足.此外,还介绍了介晶氧化锌在应用方面的进展工作,并对其未来进展方向进行了展望.

参考文献

[1] Liu, Z;Wen, XD;Wu, XL;Gao, YJ;Chen, HT;Zhu, J;Chu, PK .Intrinsic Dipole-Field-Driven Mesoscale Crystallization of Core-Shell ZnO Mesocrystal Microspheres[J].Journal of the American Chemical Society,2009(26):9405-9412.
[2] Tongxin Wang;Helmut Colfen;Markus Antonietti .Nonclassical Crystallization:Mesocrystals and Morphology Change of CaCO_3 Crystals in the Presence of a Polyelectrolyte Additive[J].Journal of the American Chemical Society,2005(10):3246-3247.
[3] Zhang, L.;Cao, X.-F.;Chen, X.-T.;Xue, Z.-L. .BiOBr hierarchical microspheres: Microwave-assisted solvothermal synthesis, strong adsorption and excellent photocatalytic properties[J].Journal of Colloid and Interface Science,2011(2):630-636.
[4] Ahniyaz A;Sakamoto Y;Bergstrom L .Magnetic field-induced assembly of oriented superlattices from maghemite nanocubes.[J].Proceedings of the National Academy of Sciences of the United States of America,2007(45):17570-17574.
[5] Helmut Colfen;Markus Antonietti .Mesocrystals: Inorganic Superstructures Made by Highly Parallel Crystallization and Controlled Alignment[J].Angewandte Chemie,2005(35):5576-5591.
[6] Jixiang Fang;Bingjun Ding;Herbert Gleiter .Mesocrystals: Syntheses in metals and applications[J].Chemical Society Reviews,2011(11):5347-5360.
[7] Hosono, E.;Tokunaga, T.;Ueno, S.;Oaki, Y.;Imai, H.;Zhou, H.;Fujihara, S. .Crystal-growth process of single-crystal-like mesoporous ZnO through a competitive reaction in solution[J].Crystal growth & design,2012(6):2923-2931.
[8] Fang JX;Ding BJ;Song XP .Self-assembly ability of building units in mesocrystal, structural, and morphological transitions in Ag nanostructures growth[J].Crystal growth & design,2008(10):3616-3622.
[9] Helmut Colfen;Stephen Mann .Higher-Order Organization by Mesoscale Self-Assembly and Transformation of Hybrid Nanostructures[J].Angewandte Chemie International Edition,2003(21):2350-2365.
[10] Law M;Greene LE;Johnson JC;Saykally R;Yang PD .Nanowire dye-sensitized solar cells[J].Nature materials,2005(6):455-459.
[11] Q. Wan;Q. H. Li;Y. J. Chen;T. H. Wang;X. L. He;J. P. Li;C. L. Lin .Fabrication and ethanol sensing characteristics of ZnO nanowire gas sensors[J].Applied physics letters,2004(18):3654-3656.
[12] 韩冬,任湘菱,陈东,唐芳琼,王冬,任俊.纳米ZnO的制备及其光催化性能研究[J].感光科学与光化学,2005(06):414-420.
[13] Atsushi Tsukazaki;Akira Ohtomo;Takeyoshi Onuma;Makoto Ohtani;Takayuki Makino;Masatomo Sumiya;Keita Ohtani;Shigefusa F.Chichibu;Syunrou Fuke;Yusaburou Segawa;Hideo Ohno;Hideomi Koinuma;Masashi Kawasaki .Repeated temperature modulation epitaxy for p-type doping and light-emitting diode based on ZnO[J].Nature materials,2005(1):42-46.
[14] Yao, KX;Zeng, HC .ZnO/PVP nanocomposite spheres with two hemispheres[J].The journal of physical chemistry. C, Nanomaterials and interfaces,2007(36):13301-13308.
[15] Mo MS;Lim SH;Mai YW;Zheng RK;Ringer SP .In situ self-assembly of thin ZnO nanoplatelets into hierarchical mesocrystal Microtubules with surface grafting of nanorods: A general strategy towards hollow mesocrystal structures[J].Advanced Materials,2008(2):339-342.
[16] Jianbo Liang;Sha Bai;Yansheng Zhang;Ming Li;Weichao Yu;Yitai Qian .Malate-Assisted Synthesis of ZnO Hexagonal Architectures with Porous Characteristics and Photoluminescence Properties Investigation[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2007(3):1113-1118.
[17] Carlos L-P;Maria C M-M;Martin W et al.Biomimetic crystallization of anisotropic zinc oxide nanoparticles in the homogeneous phase:shape control by surface additives applied under thermodynamic or kinetic control[J].RSCAdvances,2012,2:5298-5306.
[18] Zhou Xingfu;Hu Zhaolin;Fan Yiqun .Microspheric Organization of Multilayered ZnO Nanosheets with Hierarchically Porous Structures[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2008(31):11722-11728.
[19] Sun, S.;Zhang, X.;Zhang, J.;Song, X.;Yang, Z. .Unusual designated-tailoring on zone-axis preferential growth of surfactant-free ZnO mesocrystals[J].Crystal growth & design,2012(5):2411-2418.
[20] Feng Ye;Yin Peng;Guang-Yi Chen .Facile Solution Synthesis and Characterization of ZnO Mesocrystals and Ultralong Nanowires from Layered Basic Zinc Salt Precursor[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(24):10407-10415.
[21] Peng Y;Xu A W;Deng B et al.Polymer-controlled crystallization of zinc oxide hexagonal nanorings and disks[J].Journal of Physical Chemistry B,2006,110:2988-2993.
[22] Waltz, F.;Wi?mann, G.;Lippke, J.;Schneider, A.M.;Schwarz, H.-C.;Feldhoff, A.;Eiden, S.;Behrens, P. .Evolution of the morphologies of zinc oxide mesocrystals under the influence of natural polysaccharides[J].Crystal growth & design,2012(6):3066-3075.
[23] Fabrication And Sintering Of Mesocrystalline Zno Disks[J].Materials Letters,2009(3/4):486-488.
[24] Zijie Yan;Kan Zhu;Wan Ping Chen .Tomato-Like ZnO Clusters with Complex Crystallization[J].Journal of nanoscience and nanotechnology,2009(11):6627-6630.
[25] Li ZH;Gessner A;Richters JP;Kalden J;Voss T;Kubel C;Taubert A .Hollow zinc oxide mesocrystals from an ionic liquid precursor (ILP)[J].Advanced Materials,2008(7):1279-1285.
[26] Li ZH;Shkilnyy A;Taubert A .Room Temperature ZnO Mesocrystal Formation in the Hydrated Ionic Liquid Precursor (ILP) Tetrabutylammonium Hydroxide[J].Crystal growth & design,2008(12):4526-4532.
[27] Mumalo-Djokic D;Stern WB;Taubert A .Zinc oxide/carbohydrate hybrid materials via mineralization of starch and cellulose in the strongly hydrated ionic liquid tetrabutylammonium hydroxide[J].Crystal growth & design,2008(1):330-335.
[28] Lukovi? Goli?, D.;Brankovi?, G.;Po?u?a Ne?i?, M.;Vojisavljevi?, K.;Re?nik, A.;Daneu, N.;Bernik, S.;??epanovi?, M.;Poleti, D.;Brankovi?, Z. .Structural characterization of self-assembled ZnO nanoparticles obtained by the sol-gel method from Zn(CH_3COO)_22H_2O[J].Nanotechnology,2011(39):395603-1-395603-9.
[29] Li H;Zhang Y;Liu H et al.Large ZnO mesocrystals of hexagonal columnar morphology derived from liquid crystal templates[J].Journal of the American Ceramic Society,2011,94(10):3267-3275.
[30] Xiu-rong Qu;De-chang Jia .Synthesis Of Octahedral Zno Mesoscale Superstructures Via Thermal Decomposing Octahedral Zinc Hydroxide Precursors[J].Journal of Crystal Growth,2009(4):1223-1228.
[31] Tang H;Chang J C;Shan Y et al.Surfactant assisted alignment of ZnO nanocrystals to superstructures[J].Journal of Physical Chemistry B,2008,112:4016-4021.
[32] Fabrication And Sintering Of Mesocrystalline Zno Disks[J].Materials Letters,2009(3/4):486-488.
[33] Rui-Qi Song;Helmut Coelfen .Mesocrystals-Ordered Nanoparticle Superstructures[J].Advanced Materials,2010(12):1301-1330.
[34] C. M. Janet;S. Navaladian;B. Viswanathan .Heterogeneous Wet Chemical Synthesis of Superlattice-Type Hierarchical ZnO Architectures for Concurrent H2 Production and N2 Reduction[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2010(6):2622-2632.
[35] Guoxing Zhu;Yuanjun Liu;Zhenyuan Ji;Song Bai;Xiaoping Shen;Zheng Xu .Hierarchical ZnO microspheres built by sheet-like network: Large-scale synthesis and structurally enhanced catalytic performances[J].Materials Chemistry and Physics,2012(2/3):1065-1070.
[36] Dong J Y;Lin W H;Hsu Y J et al.Ultrafast formation of ZnO mesocrystals with excellent photocatalytic activities by a facile Tris-assisted antisolvent process[J].Crystal Engineering Communications,2011,13:6218-6222.
[37] Wang A J;Liao Q C;Feng J J et al.Apple pectin-mediated green synthesis of hollow double-caged peanutlike ZnO hierarchical superstructures and photocatalytic applications[J].Crystal Engineering Communications,2012,14(01):256-263.
[38] Xianluo Hu;Jingming Gong;Lizhi Zhang;Jimmy C. Yu .Continuous Size Tuning Of Monodisperse Zno Colloidal Nanocrystal Clusters By A Microwave-polyol Process And Their Application For Humidity Sensing[J].Advanced Materials,2008(24):4845-4850.
[39] Zhang H;Wu JB;Zhai CX;Du N;Ma XY;Yang D .From ZnO nanorods to 3D hollow microhemispheres: solvothermal synthesis, photoluminescence and gas sensor properties[J].Nanotechnology,2007(45):455604-1-455604-7-0.
[40] Wu, X.L.;Xiong, S.J.;Liu, Z.;Chen, J.;Shen, J.C.;Li, T.H.;Wu, P.H.;Chu, P.K. .Green light stimulates terahertz emission from mesocrystal microspheres[J].Nature nanotechnology,2011(2):103-106.
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