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阳极氧化技术是一种广泛使用的铝基表面改性技术,能提高铝材的耐磨性和耐腐蚀性,然而通过传统阳极氧化工艺制备的二维封闭孔结构难以获得超疏水性,如何开发新的阳极氧化工艺来制备铝基超疏水表面仍然面临挑战.最近新开发的阳极氧化工艺为应对这一挑战提供了解决策略.从如何构建铝基表面微纳结构的策略出发,重点综述了基于新的阳极氧化工艺制备铝基超疏水表面的“柱-孔”分级结构策略、“迷宫”结构策略及其它结构策略的研究进展,并在此基础上指出了目前存在的问题及今后需不断发展的方向.

参考文献

[1] Barthlott W;Neinhuis C.Purity of the sacred lotus, or escape from contamination in biological surfaces.[J].Planta,19971(1):1-8.
[2] Nenad Miljkovic;Evelyn N. Wang.Condensation heat transfer on superhydrophobic surfaces[J].MRS bulletin,20135(5):397-406.
[3] He, M.;Zhou, X.;Zeng, X.;Cui, D.;Zhang, Q.;Chen, J.;Li, H.;Wang, J.;Cao, Z.;Song, Y.;Jiang, L..Hierarchically structured porous aluminum surfaces for high-efficient removal of condensed water[J].Soft matter,201225(25):2680-2683.
[4] Daniel E. Weibel;Alexandre F. Michels;Adriano F. Feil.Adjustable Hydrophobicity of Al Substrates by Chemical Surface Functionalization of Nano/Microstructures[J].The journal of physical chemistry, C. Nanomaterials and interfaces,201031(31):13219-13225.
[5] Michael Thieme;Ralf Frenzel;Sylvia Schmidt;Frank Simon;Anja Hennig;Hartmut Worch;Klaus Lunkwitz;Dieter scharnweber.Generation of ultrahydrophobic properties of aluminium - a first step to self-cleaning transparently coated metal surfaces[J].Advanced Engineering Materials,20019(9):691-695.
[6] M.L.Zheludkevich;M.G.S.Ferreira;I.Miranda Salvado.Sol-gel coatings for corrosion protection of metals[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,200548(48):5099-5111.
[7] 张红霞;冯利邦;车彦慧;强小虎.长效稳定的超疏水氧化铝表面的制备与性能[J].化工新型材料,2012(9):66-68.
[8] Chanyoung Jeong;Chang-Hwan Choi.Single-Step Direct Fabrication of Pillar-on-Pore Hybrid Nanostructures in Anodizing Aluminum for Superior Superhydrophobic Efficiency[J].ACS applied materials & interfaces,20122(2):842-848.
[9] 傅爱红;李春福.超疏水表面的研究进展及制备技术[J].材料导报,2012(9):46-51.
[10] Crick, CR;Parkin, IP.Preparation and Characterisation of Super-Hydrophobic Surfaces[J].Chemistry: A European journal,201012(12):3568-3588.
[11] 柯清平;李广录;郝天歌;何涛;李雪梅.超疏水模型及其机理[J].化学进展,2010(2):284-290.
[12] Peng, S.;Tian, D.;Miao, X.;Yang, X.;Deng, W..Designing robust alumina nanowires-on-nanopores structures: Superhydrophobic surfaces with slippery or sticky water adhesion[J].Journal of Colloid and Interface Science,2013:18-24.
[13] Vengatesh, Panneerselvam;Kulandainathan, Manickam Anbu.Hierarchically Ordered Self-Lubricating Superhydrophobic Anodized Aluminum Surfaces with Enhanced Corrosion Resistance[J].ACS applied materials & interfaces,20153(3):1516-1526.
[14] Josephus G. Buijnsters;Rui Zhong;Natalia Tsyntsaru.Surface Wettability of Macroporous Anodized Aluminum Oxide[J].ACS applied materials & interfaces,20138(8):3224-3233.
[15] Ran CB;Ding GQ;Liu WC;Deng Y;Hou WT.Wetting on nanoporous alumina surface: Transition between Wenzel and Cassie states controlled by surface structure[J].Langmuir: The ACS Journal of Surfaces and Colloids,200818(18):9952-9955.
[16] Mateo, J.N.;Kulkarni, S.S.;Das, L.;Tepper, G.C.;JWynne, K.;Bandyopadhyay, S..Wetting behavior of polymer coated nanoporous anodic alumina films: Transition from super-hydrophilicity to super-hydrophobicity[J].Nanotechnology,20113(3):035703-1-035703-10.
[17] Oner D.;McCarthy TJ..Ultrahydrophobic surfaces. Effects of topography length scales on wettability[J].Langmuir: The ACS Journal of Surfaces and Colloids,200020(20):7777-7782.
[18] Yoshimitsu Z.;Nakajima A.;Watanabe T.;Hashimoto K..Effects of surface structure on the hydrophobicity and sliding behavior of water droplets[J].Langmuir: The ACS Journal of Surfaces and Colloids,200215(15):5818-5822.
[19] Anne-Marie Kietzig;Savvas G. Hatzikiriakos;Peter Englezos;Vaibhav Bahadur;Suresh V. Garimella.Preventing the Cassie—Wenzel Transition Using Surfaces withNoncommunicating Roughness Elements[J].Langmuir: The ACS Journal of Surfaces and Colloids,20098(8):4815-4820.
[20] Z. L. Xiao;Catherine Y. Han;U. Welp;H. H. Wang;W. K. Kwork;G. A. Willing;J. M. Hiller;R. E. Cook;D. J. Miller;G. W. Crabtree.Fabrication of Alumina Nanotubes and Nanowires by Etching Porous Alumina Membranes[J].Nano letters,200211(11):1293-1297.
[21] Wonbae Lee;Bo Gi Park;Dae Hyun Kim;Dong Jun Ahn;Yongdoo Park;Sang Hoon Lee;Kyu Back Lee.Nanostructure-Dependent Water-Droplet Adhesiveness Change in Superhydrophobic Anodic Aluminum Oxide Surfaces: From Highly Adhesive to Self-Cleanable[J].Langmuir: The ACS Journal of Surfaces and Colloids,20103(3):1412-1415.
[22] Dae-Ho Kim;Yongsung Kim;Byung Min Kim;Jong Soo Ko;Chae-Ryong Cho;Jong-Man Kim.Uniform superhydrophobic surfaces using micro/nano complex structures formed spontaneously by a simple and cost-effective nonlithographic process based on anodic aluminum oxide technology[J].Journal of Micromechanics and Microengineering,20114(4):045003-1-045003-8.
[23] Zhao, Ye;Luo, Yuting;Li, Juan;Yin, Fei;Zhu, Jie;Gao, Xuefeng.Condensate Microdrop Self-Propelling Aluminum Surfaces Based on Controllable Fabrication of Alumina Rod-Capped Nanopores[J].ACS applied materials & interfaces,201521(21):11079-11082.
[24] Wu WC;Wang XL;Wang DA;Chen M;Zhou F;Liu WM;Xue QJ.Alumina nanowire forests via unconventional anodization and super-repellency plus low adhesion to diverse liquids[J].Chemical communications,20099(9):1043-1045.
[25] Li, Shou-Yi;Wang, Jian;Li, Yan;Wang, Cheng-Wei.Superhydrophobic surface based on self-aggregated alumina nanowire clusters fabricated by anodization[J].Microelectronic engineering,2015Jul.1(Jul.1):70-76.
[26] Yeongae Kim;Sangmin Lee;Handong Cho.Robust Superhydrophilic/Hydrophobic Surface Based on Self-Aggregated Al2O3 Nanowires by Single-Step Anodization and Self-Assembly Method[J].ACS applied materials & interfaces,201210(10):5074-5078.
[27] Shan Peng;Dong Tian;Xiaojun Yang.Highly Efficient and Large-Scale Fabrication of Superhydrophobic Alumina Surface with Strong Stability Based on Self-Congregated Alumina Nanowires[J].ACS applied materials & interfaces,20147(7):4831-4841.
[28] Youfa Zhang;Xinquan Yu;Hao Wu;Jie Wu.Facile fabrication of superhydrophobic nanostructures on aluminum foils with controlled-condensation and delayed-icing effects[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,201220(20):8253-8257.
[29] Qian BT;Shen ZQ.Fabrication of superhydrophobic surfaces by dislocation-selective chemical etching on aluminum, copper, and zinc substrates[J].Langmuir: The ACS Journal of Surfaces and Colloids,200520(20):9007-9009.
[30] 徐文骥;窦庆乐;孙晶;宋金龙;庞桂兵.基于电化学加工方法的铝基超疏水表面制备技术研究[J].中国机械工程,2011(19):2354-2359.
[31] Meirong Song;Yuru Liu;Shumin Cui;Long Liu;Min Yang.Fabrication and icing property of superhydrophilic and superhydrophobic aluminum surfaces derived from anodizing aluminum foil in a sodium chloride aqueous solution[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013Oct.15(Oct.15):19-24.
[32] Wenyong Liu;Yuting Luo;Linyu Sun;Ruomei Wu;Haiyun Jiang;Yuejun Liu.Fabrication of the superhydrophobic surface on aluminum alloy by anodizing and polymeric coating[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013Jan.1(Jan.1):872-878.
[33] Hui Wang;Dan Dai;Xuedong Wu.Fabrication Of Superhydrophobic Surfaces On Aluminum[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,200817(17):5599-5601.
[34] Elliot Jenner;Charlotte Barbier;Brian D'Urso.Durability of hydrophobic coatings for superhydrophobic aluminum oxide[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013Oct.1(Oct.1):73-76.
[35] Barthwal, S.;Kim, Y.S.;Lim, S.-H..Mechanically robust superamphiphobic aluminum surface with nanopore-embedded microtexture[J].Langmuir: The ACS Journal of Surfaces and Colloids,201338(38):11966-11974.
[36] Wang, X.;Liu, X.;Zhou, F.;Liu, W..Self-healing superamphiphobicity[J].Chemical communications,20118(8):2324-2326.
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