有序多孔材料具有大小均匀、排列规则的孔道,从而在选择性吸收、分离提纯、生物医学、催化、新型组装材料等方面有着巨大的应用潜力.目前有序多孔材料主要包括氧化铝、氧化硅、氧化钛、氧化锡、氧化锆等,综述了多种有序多孔材料的制备方法,并且重点分析了阳极氧化铝的形成机理.
参考文献
[1] | 潘善林,张浩力,彭勇,王臻,力虎林.模板合成法制备金纳米线的研究[J].高等学校化学学报,1999(10):1622-1624. |
[2] | Zakhidov A A;Baughman R H;Lqbal Z .Carbon structures with three-dimensional periodicity at optical wavelengths[J].Science,1998,282:897. |
[3] | Vlasov YA.;Norris DJ.;Yao N. .Synthesis of photonic crystals for optical wavelengths from semiconductor quantum dots[J].Advanced Materials,1999(2):165-169. |
[4] | Judith E G;J Wijndhoven;Willem L Vos .Preparation of photonic crystals made of air spheres in titania[J].Science,1998,281:802. |
[5] | Holland B T;Blandford C F;Stein A et al.Synthesis of highly ordered three-dimensional mineral honeycombs with macropores[J].Science,1998,281:538. |
[6] | Lukens W W;Yang P;Stucky G D et al.Microporous decatungstates:synthesis and photochemical behavior[J].CHEMISTRY OF MATERIALS,2001,13(01):28. |
[7] | 黄平,徐可为,憨勇.基于表面生物学改性的多孔状二氧化钛/磷灰石复合薄膜的制备[J].硅酸盐学报,2002(03):316-320. |
[8] | 王建,王成伟,李燕,刘维民,Zaima Shigeaki.Ag/AAO纳米有序阵列复合结构等效光学参量的确定[J].物理学报,2005(12):5920-5925. |
[9] | Jessensky O.;Gosele U.;Muller F. .Self-organized formation of hexagonal pore arrays in anodic alumina[J].Applied physics letters,1998(10):1173-1175. |
[10] | Li A P;Muller F;Birner A et al.Polycrystalline nanopore arrays with hexagonal ordered aluminum[J].Journal of Vacuum Science and Technology A-Vacuum Surfaces and Films,1999,17(04):1428. |
[11] | 范晓丹,徐廷献,徐明霞,梁辉.电泳沉积法γ-Al2O3微孔膜的制备与表征[J].硅酸盐学报,2002(04):460-464. |
[12] | 常玉芬;宁桂玲 .聚酰胺高分子在三维有序的氧化铝多孔纳米材料合成中的应用[J].高等学校化学学报,2003,16(04):341. |
[13] | Yang HF.;Shi QH.;Tian BZ.;Xie SH.;Zhang FQ.;Yan Y.;Tu B.;Zhao DY. .A fast way for preparing crack-free mesostructured silica monolith[J].Chemistry of Materials,2003(2):536-541. |
[14] | Lei J H;Zhao J;Chen Y X et al.Different synthesis method for ordered mesoporous silica and their characteristics comparison[J].Journal of Wuhan University of Technology(Materials Science Edition),2003,18(03):1. |
[15] | 宋晓岚,曲鹏,王海波,吴雪兰,邱冠周.介孔材料的制备、表征、组装及其应用[J].材料导报,2004(10):28-30,53. |
[16] | 沈勇,邬泉周,李玉光.溶胶凝胶法制备三维规则排列大孔TiO2材料[J].中山大学学报(自然科学版),2002(03):45-47. |
[17] | Liu K S;Fu H G;Shi K Y et al.Preparation of large-pore mesoporous nanocrystalline TiO2 thin films with tailored pore diameter[J].Journal of Physical Chemistry B,2005,109(40):18719. |
[18] | Zhao D Y;Feng J L;Huo Q S et al.Triblock copolymer syntheses of mesoporous silica with periodic 50 to 300 angstrom pores[J].Science,1998,279:548. |
[19] | Takenaka S;Takahashi R;Sato S et al.Pore size control of mesoporous SnO2 prepared by using stearic acid[J].MICROPOROUS AND MESOPOROUS MATERIALS,2003,59:123. |
[20] | 邬泉周,沈勇,孙振范,李玉光.三维有序大孔SnO2及SnO2/SiO2材料的制备及结构特征[J].无机材料学报,2004(04):939-942. |
[21] | 陈航榕,施剑林,张文华,严东生.高比表面积有序多孔氧化锆的合成与表征[J].无机材料学报,2000(06):1123-1126. |
[22] | Ciesla U et al.Highly ordered porous zirconias from surfactant-controlled syntheses:zirconium oxide-sulfate and zirconium oxo phosphate[J].CHEMISTRY OF MATERIALS,1999,11(02):227. |
[23] | Thompson G E;Wood G C .Porous anodic film formation on aluminum[J].Nature,1981,290:230. |
[24] | Parkhutik V P;Shershulsky V I .Theoretical modeling of porous oxide growth on aluminum[J].Journal of Physics D:Applied Physics,1992,25:1258. |
[25] | Li AP.;Birner A.;Nielsch K.;Gosele U.;Muller F. .Hexagonal pore arrays with a 50-420 nm interpore distance formed by self-organization in anodic alumina[J].Journal of Applied Physics,1998(11):6023-6026. |
[26] | Xu Y et al.Mechanism of anodic filmgrowth on aluminium[J].Transactions of the Institute of Metal Finishing,1985,63:98. |
[27] | O'Sullivan T;Wood G C .The morphology and the mechanism of formation of porous anodic films on aluminium[J].Proceedings of the Royal Society of London.Series A,Mathematical and Physical Sciences,1970,317:511. |
[28] | Masuda H;Fukuda K .ORDERED METAL NANOHOLE ARRAYS MADE BY A TWO-STEP REPLICATION OF HONEYCOMB STRUCTURES OF ANODIC ALUMINA[J].Science,1995(5216):1466-1468. |
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