欢迎登录材料期刊网

材料期刊网

高级检索

超疏水现象广泛存在自然界中,由于具有特殊的疏水及自清洁性能,在材料仿生构建领域引起了国内外学者的高度关注。木材仿生超疏水功能化修饰,能有效隔离水分与木材的接触,在木材及其产品室外长久利用、复杂高湿环境利用方面意义重大。从自然界超疏水现象与疏水理论基础出发,重点综述了木材超疏水仿生构建的主要方法,并对超疏水木材的性能进行探讨,提出了木材超疏水处理亟待解决的难题。

The phenomenon of superhydrophobic surfaces in natural exists wildly,which attracted highly atten-tion of researches at home and abroad on the area of bionic fabrication materials,for its strong hydrophobicity and self-cleaning property.The functional modification of superhydrophobicity on wood or wood products will segregate water and wood effectively,this has significance on outside long time utilization and complicated high humidity environment.This article starts from superhydrophobic phenomenon and theory,focuses on the prin-ciple methods of superhydrophobic fabrication,discusses properties,and proposes the challenge of superhydro-phobic treatment on wood surface.

参考文献

[1] 顾炼百.木材改性技术发展现状及应用前景[J].木材工业,2012(03):1-6.
[2] Barthlott W;Neinhuis C .Purity of the sacred lotus, or escape from contamination in biological surfaces.[J].Planta,1997(1):1-8.
[3] Gao X;Jiang L .Biophysics:water-repellent legs of water striders[J].NATURE,2004,432(7013):36-36.
[4] Onda T;Shibuichi S;Satoh N et al.Super-water-repellent fractal surfaces[J].LANGMUIR,1996,12(9):2125-2127.
[5] Neinhuis C;Barthlott W .Characterization and distribution of water-repellent, self-cleaning plant surfaces.[J].Annals of Botany,1997(6):667-677.
[6] Wagner T;Neinhuis C;Barthlott W .Wettability and contami-nability of insect wings as a function of their surface sculp-tures[J].ACTA ZOOLOGICA,1996,77(3):213-225.
[7] Sun TL;Feng L;Gao XF;Jiang L .Bioinspired surfaces with special wettability[J].Accounts of Chemical Research,2005(8):644-652.
[8] Ma M;Hill R M .Superhydrophobic surface[J].Current Opinion in Colloid & Interface Science,2006,11(4):193-202.
[9] Lin Feng;Yanlin Song;Biqian Liu;Daoben Zhu .Creation of a superhydrophobic surface from an amphiphilic polymer[J].Angewandte Chemie,2003(7):824-826.
[10] Young T .An essay on the cohesion of fluids[J].Philo-sophical Transactions of the Royal Society of London,1805,95:65-87.
[11] Wenzel R N .Resistance of solid surfaces to wetting bywater[J].Industrial & Engineering Chemistry,1936,28(8):988-994.
[12] Cassie A B D;Baxter S .Wettability of porous surfaces[J].Transactions of the Faraday Society,1944,40:546-551.
[13] Quere D .Non-sticking drops[J].Reports on Progress in Physics,2005(11):2495-2532.
[14] Nosonovsky M .Model for solid-liquid and solid-solid friction of rough surfaces with adhesion hysteresis[J].The Journal of Chemical Physics,2007(22):24701-1-24701-6-0.
[15] Noscinovsky M;Bhushan B .Patterned nonadhesive surfaces: Superhydrophobicity and wetting regime transitions[J].Langmuir: The ACS Journal of Surfaces and Colloids,2008(4):1525-1533.
[16] Liu, H.H.;Zhang, H.Y.;Li, W. .Thermodynamic analysis on wetting behavior of hierarchical structured superhydrophobic surfaces[J].Langmuir: The ACS Journal of Surfaces and Colloids,2011(10):6260-6267.
[17] Marmur A .From hygrophilic to superhygrophobic: Theoretical conditions for making high-contact-angle surfaces from low-contact-angle materials[J].Langmuir: The ACS Journal of Surfaces and Colloids,2008(14):7573-7579.
[18] 谢龙,邵自强.静电纺丝制备CMCAB超疏水纤维材料[J].功能材料,2012(06):715-717.
[19] Zhong, W.;Li, Y.;Chen, X.;Wang, Y.;Yang, W. .Superhydrophobic polyaniline hollow bars: Constructed with nanorod-arrays based on self-removing metal-monomeric template[J].Journal of Colloid and Interface Science,2012(1):28-32.
[20] Zhao, Y.;Xu, Z.;Wang, X.;Lin, T. .Photoreactive azido-containing silica nanoparticle/polycation multilayers: Durable superhydrophobic coating on cotton fabrics[J].Langmuir: The ACS Journal of Surfaces and Colloids,2012(15):6328-6335.
[21] 许伟,安秋凤,郝丽芬,王前进.氟硅聚合物/纳米SiO2杂化材料的制备与应用性能[J].功能材料,2011(04):675-678.
[22] R.Jafari;R. Menini;M. Farzaneh .Superhydrophobic and icephobic surfaces prepared by RF-sputtered polytetrafluoroethylene coatings[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2010(5):1540-1543.
[23] Su, R.;Liu, H.;Kong, T.;Song, Q.;Li, N.;Jin, G.;Cheng, G. .Tuning surface wettability of In_xGa_((1-x))N nanotip arrays by phosphonic acid modification and photoillumination[J].Langmuir: The ACS Journal of Surfaces and Colloids,2011(21):13220-13225.
[24] 赵坤,杨保平,张俊彦.铝合金基体超疏水表面的制备及防冰霜性能研究[J].功能材料,2010(z1):80-83,88.
[25] Darmanin, T.;De Givenchy, E.T.;Amigoni, S.;Guittard, F. .Hydrocarbon versus fluorocarbon in the electrodeposition of superhydrophobic polymer films[J].Langmuir: The ACS Journal of Surfaces and Colloids,2010(22):17596-17602.
[26] Andreas Greiner;Joachim H. Wendorff .Electrospinning: A Fascinating Method for the Preparation of Ultrathin Fibers[J].Angewandte Chemie,2007(30):5670-5703.
[27] 彭万喜;吴义强 .超疏水木材[P].中国专利:ZL 201020223508.5,2011-05-18.
[28] 彭万喜;吴义强;卿彦 .一种超疏水木材及其制备方法[P].中国专利:ZL 200810030688.2,2008-08-06.
[29] Chien-Te Hsieh;Bi-Sheng Chang;Jia-Yi Lin .Improvement of water and oil repellency on wood substrates by using fluorinated silica nanocoating[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2011(18):7997-8002.
[30] Manoudis PN;Karapanagiotis I;Tsakalof A;Zuburtikudis I;Panayiotou C .Superhydrophobic composite films produced on various substrates[J].Langmuir: The ACS Journal of Surfaces and Colloids,2008(19):11225-11232.
[31] Lie Shen;Hongliang Ding;Wen Wang;Qipeng Guo .Fabrication of Ketjen black-polybenzoxazine superhydrophobic conductive composite coatings[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013(Mar.1):297-301.
[32] Hulya Budunoglu;Adem Yildirim;Mustafa O. Guler .Highly Transparent, Flexible, and Thermally Stable Superhydrophobic ORMOSIL Aerogel Thin Films[J].ACS applied materials & interfaces,2011(2):539-545.
[33] Matson D W;Linehan J C;Bean R M .Ultrafine iron oxide powders generated using a flow-through hydrothermal process[J].Materials Letters,1992,14(4):222-226.
[34] Yanchun Fu;Haipeng Yu;Qingfeng Sun;Gang Li;Yongzhuang Liu .Testing of the superhydrophobicity of a zinc oxide nanorod array coating on wood surface prepared by hydrothermal treatment[J].Holzforschung,2012(6):739-744.
[35] Sun, Q.;Lu, Y.;Liu, Y. .Growth of hydrophobic TiO_2 on wood surface using a hydrothermal method[J].Journal of Materials Science,2011(24):7706-7712.
[36] Wang, S.;Wang, C.;Liu, C.;Zhang, M.;Ma, H.;Li, J..Fabrication of superhydrophobic spherical-like α-FeOOH films on the wood surface by a hydrothermal method[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,2012:29-34.
[37] Liu M;Qing Y;Wu Y Q et al.Facile fabrication of su-perhydrophobic surface on wood substrate via one-step hydrothermal process[J].Applied Surface Science,2015,330:332-338.
[38] St?ber W;Fink A;Bohn E .Controlled growth of monodis-perse silica spheres in the micron size range[J].Journal of Colloid and Interface Science,1968,26(1):62-69.
[39] Kiyoharu Tadanaga;Junichi Morinaga;Atsunori Matsuda;Tsutomu Minami .Superhydrophobic-Superhydrophilic Micropatterning on Flowerlike Alumina Coating Film by the Sol-Gel Method[J].Chemistry of Materials,2000(3):590-592.
[40] 梁金,吴义强,刘明.溶胶-凝胶原位生长制备超疏水木材[J].中国工程科学,2014(04):87-91.
[41] Shuliang Wang;Changyu Liu;Guochao Liu;Ming Zhang;Jian Li;Chengyu Wang .Fabrication of superhydrophobic wood surface by a sol-gel process[J].Applied Surface Science,2011(2):806-810.
[42] Zhang, L;Sun, JQ .Layer-by-Layer Codeposition of Polyelectrolyte Complexes and Free Polyelectrolytes for the Fabrication of Polymeric Coatings[J].Macromolecules,2010(5):2413-2420.
[43] Feng Liu;Shuliang Wang;Ming Zhang;Miaolian Ma;Chengyu Wang;Jian Li .Improvement of mechanical robustness of the superhydrophobic wood surface by coating PVA/SiO_2 composite polymer[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013(Sep.1):686-692.
[44] Chengyu Wang;Ming Zhang;Yang Xu .One-step synthesis of unique silica particles for the fabrication of bionic and stably superhydrophobic coatings on wood surface[J].Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan,2014(2):530-535.
[45] 田根林,余雁,王戈,程海涛,陆方.竹材表面超疏水改性的初步研究[J].北京林业大学学报,2010(03):166-169.
[46] Wang, C.;Piao, C.;Lucas, C. .Synthesis and characterization of superhydrophobic wood surfaces[J].Journal of Applied Polymer Science,2011(3):1667-1672.
[47] Shuliang Wang;Junyou Shi;Changyu Liu;Cheng Xie;Chengyu Wang .Fabrication of a superhydrophobic surface on a wood substrate[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2011(22):9362-9365.
[48] Changyu Liu;Shuliang Wang;Junyou Shi;Chengyu Wang .Fabrication of superhydrophobic wood surfaces via a solution-immersion process[J].Applied Surface Science,2011(2):761-765.
[49] 王成毓;刘常瑜 .一种超疏水性木材的制备方法[P].中国专利:ZL 201010221285.3,2010-10-27.
[50] Xin Du;Junsheng S. Li;Linxian X. Li .Porous poly(2-octyl cyanoacrylate): a facile one-step preparation of superhydrophobic coatings on different substrates[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,2013(4):1026-1029.
[51] Sun, Q.;Lu, Y.;Zhang, H.;Yang, D.;Wang, Y.;Xu, J.;Tu, J.;Liu, Y.;Li, J. .Improved UV resistance in wood through the hydrothermal growth of highly ordered ZnO nanorod arrays[J].Journal of Materials Science,2012(10):4457-4462.
[52] Todd Shupe;Cheng Piao;Cran Lucas .The termiticidal properties of superhydrophobic wood surfaces treated with ZnO nanorods[J].Holz als Roh- und Werkstoff,2012(4):531-535.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%