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氧化铝微纳结构材料由于具有特殊的形貌、高比表面积、高介电常数、高的热和化学稳定性等特性,以及可以作为构筑单元,采用自下而上的方法合成各种超级结构材料,从而使其在吸收剂、催化剂裁体、陶瓷材料、耐磨材料和新结构材料合成等诸多领域得到重要应用,已成为当前纳米材料科学领域的前沿和热点.结合近年来国内外的最新研究进展对氧化铝微纳结构材料的制备方法、表征和物性研究等进行了综述,并对其发展趋势和前景进行了展望.

参考文献

[1] Can Zhihong;Ning Guiling.Morphological control of mesoporous alumina nanostructures via template-free solvothermalsynthesis[J].Materials Letters,2007(61):3758.
[2] Zhang Jun;Shi Fengjun.Nanoparticles assembly of boehrnite nanofibers without a surfactant[J].Materials Research Bulletin,2008(43):1709.
[3] He Taobo;Xiang Lan;Zhu Wancheng.H2SO4-assisted hydrothermal preparation of γ-AlOOH nanorods[J].Materials Letters,2008(62):2939.
[4] Mishra D;Anand S.Effect of anions during hydrothermal preparation of boehmites[J].Materials Letters,2002(53):133.
[5] Chen Xiangying;Lee Soon W.pH-dependent formation of boehmite(γ-AlOOH)nanorods and nanoflakes[J].Chemical Physics Letters,2007(438):279.
[6] Chen Xiangying;Zhang Zhongjie.Controlled hydrothermal synthesis of colloidal boehmite(γ-AlOOH)nanorods and mnoflakes and their conversion into γ-Al2O3 nanocrystals[J].Solid State Communications,2008(145):368.
[7] Zhu H Y.Manipulating the size and morphology of aluminum hydrous oxide nanoparticles by soft-chemistryapproaches[J].Microporous and Mesoporous Materials,2005(85):226.
[8] Hamed Arami;Mahyar Mazloumi;Razieh Khalifehzadeh .Bundles of self-assembled boehmite nanostrips from a surfactant free hydrothermal route[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2008(1/2):551-554.
[9] Music S;Dragc Oevic;Popovic S.Hydrothermal crystallization of boehmite from freshly precipitated aluminium hydroxide[J].Materials Letters,1999(40):269.
[10] Li Dianyi;Lin Yishiue.Synthesis of mesoporous pseudoboehmite and alumina templated with 1-hexadecyl-2,3-dimethyl-imidazolium choride[J].Mocrop Mesop Mater,2008(108):276.
[11] Liu Ye;Ma Ding.Hydrothermal synthesis of microscale boehrnite and gamma nanoleaves alumina[J].Materials Letters,2008(62):1297.
[12] Mahyar Mazloumi;Mehdi Attarchi;Aidin Lak;Matin Sadat Mohajerani;Amir Kajbafvala;Saeid Zanganeh;S.K. Sadrnezhaad .Boehmite nanopetals self assembled to form rosette-like nanostructures[J].Materials Letters,2008(26):4184-4186.
[13] Ma Mingguo;Zhu Yingjie;Xu Zili.A new route to synthesis of γ-alumina nanorods[J].Materials Letters,2007(61):1812.
[14] Wu Xiuyong;Wang Debao.Synthesis of γ-AlOOH (γ-Al2O3)self-encapsulated and hollow architectures[J].Materials Chemistry and Physics,2008(109):560.
[15] Lee Hyun-Chul;Kim Hae-Jin.Synthesis of nanostructured γ-alumina with a cationic surfactant and controlled amountsof water[J].Microporous and Mesoporous Materials,2005(79):61.
[16] Li Yuanyuan;Liu Jinping;Jia Zhijie.Fabrication of boehmite AlOOH nanofibers by a simple hydrothermal process[J].Materials Letters,2006(60):3586.
[17] Liu, Q;Wang, AQ;Wang, XD;Zhang, T .Morphologically controlled synthesis of mesoporous alumina[J].Microporous and Mesoporous Materials,2007(1/3):35-44.
[18] Qu Lihong;He Changqing.Hydrothermal synthesis of alumina nanotubes templated by anionic surfactant[J].Materials Letters,2005(59):4034.
[19] Bai P;Su FB;Wu PP;Wang LK;Lee FY;Lv L;Yan ZF;Zhao XS .Copolymer-controlled homogeneous precipitation for the synthesis of porous microfibers of alumina[J].Langmuir: The ACS Journal of Surfaces and Colloids,2007(8):4599-4605.
[20] Bai Peng;Wu Pingping;Yan Zifeng.A reverse cation-anion double hydrolysis approach to the synthesis of mesoporous γAl2O3 with a bimodal pore size distribution[J].Microporous and Mesoporous Materials,2008(47):1.
[21] Ray Jagadish C;You Kwang-Seok.Mesoporous alumina(Ⅰ):Comparison of synthesis schemes using anionic,cationic,and non-ionic surfactants[J].Mierop Mesop Mater,2007(100):183.
[22] Ali Mohraz;Miehael J;Solomon.Getation and intemal dynamics of colloidal rod aggregates[J].Journal of Colloid and Interface Science,2006(300):155.
[23] Lu JG;Chang PC;Fan ZY .Quasi-one-dimensional metal oxide materials - Synthesis, properties and applications[J].Materials Science & Engineering, R. Reports: A Review Journal,2006(1/3):49-91.
[24] Wang Jianqiang;Wang Youzhen.A novel sol-gel synthetic route to alumina mnofibers via aluminum nitrate and hexamethylenetetramine[J].Materials Letters,2007(61):5074.
[25] Chandradass J;Balasubramanian M.Sobgel processing of alumina fibres[J].Journal of Materials Processing Technology,2006(173):275.
[26] Shen S C;Ng W K.Novel synthesis of lace-like nanoribbons of boehmite and γ-alumina by dry gel conversion method[J].Materials Letters,2007(61):4280.
[27] Ramanan Venkatesh;S.R. Ramanan .Influence of processing variables on the microstructure of sol-gel spun alumina fibres[J].Materials Letters,2002(3):189-195.
[28] Kim Seung-Moon;Lee Yun-Jo.Synthesis and characterization of a highly active alumina catalyst for methanol dehydration to dimethyl ether[J].Applied Catalysis A:General,2008(348):113.
[29] Cai Weiquan;Li Huiquan;Zhang Yi.Azeotropic distillation-assisted preparation of macro-mesostructured γ-Al2O3 nanofibres of crumpled sheet-like morphology[J].Materials Chemistry and Physics,2006(96):136.
[30] Yang Qi;Deng Yida;Hu Wenbin.Synthesis of alumina nanofibers by a mercury-mediated method[J].Ceramics International,2008(11):1.
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