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单分散的胶体颗粒能自发排列成胶体阵列,其长程有序结构能获得许多特殊的性质.胶体阵列被用作制备可见光及近红外波长范围的光子晶体的基础.以其为模板制备的反蛋白石结构可拥有全光子禁带,为新一代光子器件开发和应用带来了希望.介绍了单分散胶体颗粒的主流制备方法,归纳总结了胶体阵列制备的几种方法和国内外最新的相关报道,简述了其在制备三维光子晶体领域的最新进展以及该领域国内外的研究进展.

参考文献

[1] Bozhkoa S I;Chaikaa A N;Emelchenko G A .[J].Applied Surface Science,2004,234:93.
[2] Yablonovitch E .[J].Physical Review Letters,1987,58(20):2059.
[3] John S .[J].Physical Review Letters,1987,58(23):2486.
[4] 林峰,彭景翠,李宏建,徐玉峰,李文华.光子晶体的研究进展[J].液晶与显示,2003(05):374-378.
[5] Stober W;Fink A;Bohn E .[J].Journal of Colloid and Interface Science,1968,26:62.
[6] 董鹏 .[J].物理化学学报,1998,14(02):109.
[7] Kim KD.;Bae HJ.;Kim HT. .Synthesis and growth mechanism of TiO2-coated SiO2 fine particles[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,2003(1/3):163-173.
[8] Huang H;Remsen E .[J].Journal of the American Chemical Society,1999,121:3805.
[9] Mayoral R;Requena J;Moya J S .[J].Advanced Materials,1997,9(03):257.
[10] 杨振忠,齐凯,刘正平,王利军,赵得禄.单分散聚苯乙烯乳胶有序膜在二氧化硅多孔材料制备中的模板作用[J].高分子学报,2000(03):364.
[11] 李明海,马懿,徐岭,张宇,马飞,黄信凡,陈坤基.二氧化硅人工蛋白石晶体(opal)的制备及其结构性质的研究[J].物理学报,2003(05):1302-1306.
[12] 周倩,董鹏,程丙英.大尺寸SiO2胶体颗粒的重力沉降自组装研究[J].物理学报,2004(11):3984-3989.
[13] Shelekhina V M;Prokhorov O A;Vityaz P A .[J].Synthetic Metals,2001,124:137.
[14] Gong Tieying;Wu D T;Marr D W M .[J].Langmuir,2003,19(15):5967.
[15] Dimitrov A S;Nagayama K .[J].Langmuir,1996,12(05):1303.
[16] Jiang P;Bertone J F;Hwang K S .[J].CHEMISTRY OF MATERIALS,1999,11(08):2132.
[17] Gu Zhongze;Akira Fujishima;Osamu Sato .[J].Chemistry of Materials,2002,14(02):760.
[18] Ye Yonghong;Francois LeBlanc;Alain Hache .[J].Applied Physics Letters,2001,78(01):52.
[19] Cong Hailin;Cao Weixiao .[J].Langmuir,2003,19(20):8177.
[20] Wong S;Kitaev V .[J].Journal of the American Chemical Society,2003,125(50):15589.
[21] Diao J J;Hutchison J B .[J].Journal of Chemical Physics,2005,122(18):1.
[22] Velev O D;Denkov N D;Paunov V N .[J].Langmuir,1993,9:3702.
[23] Dimitrov A S;Nagayama K .[J].Langmuir,1996,12:1303.
[24] Dimitrov A S;Miwa T;Nagayama K .[J].Langmuir,1999,15:5257.
[25] Sang Hyuk Im;Yong Taik Lim;Duck Jong Suh;O Ok Park .Three-Dimensional Self-Assembly of Colloids at a Water-Air Interface: A Novel Technique for the Fabrication of Photonic Bandgap Crystals[J].Advanced Materials,2002(19):1367-1369.
[26] 唐天,曾钫,李娜,孙再武,童真.胶体晶体及三维有序多孔材料的制备[J].华南理工大学学报(自然科学版),2003(10):73-76.
[27] Bressona F;Chen C C;Chi G C .[J].Applied Surface Science,2003,217(1-4):281.
[28] Hiroshi Fudouzi .Fabricating high-quality opal films with uniform structure over a large area[J].Journal of Colloid and Interface Science,2004(1):277-283.
[29] Yin Yadong;Li Zhiyuan;Xia Younan .[J].Langmuir,2003,19:622.
[30] Yin Yadong;Xia Ounan .[J].Advanced Materials,2001,13(04):267.
[31] John Texter .[J].Comptes Rendus Chimie,2003,6:1425.
[32] Wang Wei;Gu Baohua .[J].Journal of Physical Chemistry B,2003,107(15):3400.
[33] Leiderer P;Palberg T .[J].Physical Review Letters,1997,79:2348.
[34] Gates B;Lu Y;Li Z Y et al.[J].Applied Physics A:Materials Science and Processing,2003,76(04):509.
[35] Ruhl T;Spahn P;Hellmann G P .[J].Polymer,2003,44(25):7625.
[36] Jiang, P;McFarland, MJ .Large-scale fabrication of wafer-size colloidal crystals, macroporous polymers and nanocomposites by spin-coating[J].Journal of the American Chemical Society,2004(42):13778-13786.
[37] Almeida R M .[J].Current Opinion in Solid State and Materials Science,2003,7(02):151.
[38] Vlasov Y A;Bo Xiangzheng;Sturm J C et al.[J].Nature,2001,414(15):289.
[39] Popov O;Lirtsman V;Kopnov F et al.[J].Synthetic Metals,2003,139:643.
[40] Allard M;Sargent E H .[J].Applied Physics Letters,2004,85(24):5887.
[41] Seelig EW.;Tang B.;Yamilov A.;Cao H.;Chang RPH. .Self-assembled 3D photonic crystals from ZnO colloidal spheres[J].Materials Chemistry and Physics,2003(1):257-263.
[42] Velev O D;Jede T A;Lobo R F et al.[J].Nature,1997,389:447.
[43] Galisteo J F;Santamaria F G;Golmayo D .[J].Journal of Optics A:Pure and Applied Optics,2005,7:244.
[44] Schroden RC.;Al-Daous M.;Blanford CF.;Stein A. .Optical properties of inverse opal photonic crystals[J].Chemistry of Materials,2002(8):3305-3315.
[45] Busch K.;John S. .Photonic band gap formation in certain self-organizing systems[J].Physical review.E.Statistical physics, plasmas, fluids, and related interdisciplinary topics,1998(3 Pt.b):3896-3908.
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