Biomedical Engineering Reference
In-Depth Information
74. Schondelmaier, D., Cramm, S., Klingeler, R., Morenzin, J., Zilkens, C., Eberhardt, W.:
Orientation
and
self-assembly
of
hydrophobic
fluoroalkylsilanes.
Langmuir
18 (16),
6242-6245 (2002)
75. Song, X., Zhai, J., Wang, Y., Jiang, L.: Fabrication of superhydrophobic surfaces by self-
assembly and their water-adhesion properties. J. Phys. Chem. B 109 (9), 4048-4052 (2005)
76. Zhang, G., Wang, D., Gu, Z.-Z., M ohwald, H.: Fabrication of superhydrophobic surfaces from
binary colloidal assembly. Langmuir 21 (20), 9143-9148 (2005)
77. Zhao, N., Shi, F., Wang, Z., Zhang, X.: Combining layer-by-layer assembly with electrode-
position of silver aggregates for fabricating superhydrophobic surfaces. Langmuir 21 (10),
4713-4716 (2005)
78. Shi, F., Wang, Z., Zhang, X.: Combining a layer-by-layer assembling technique with
electrochemical deposition of gold aggregates to mimic the legs of water striders. Adv. Mater.
17 (8), 1005-1009 (2005)
79. Ma, M., Mao, Y., Gupta, M., Gleason, K.K., Rutledge, G.C.: Superhydrophobic fabrics
produced
by
electrospinning
and
chemical
vapor
deposition.
Macromolecules
38 (23),
9742-9748 (2005)
80. Liu, H., Feng, L., Zhai, J., Jiang, L., Zhu, D.B.: Reversible wettability of a chemical
vapor deposition prepared ZnO film between superhydrophobicity and superhydrophilicity.
Langmuir 20 (14), 5659-5661 (2004)
81. Hosono, E., Fujihara, S., Honma, I., Zhou, H.S.: Superhydrophobic perpendicular nanopin
film by the bottom-up process. J. Am. Chem. Soc. 127 (39), 13458-13459 (2005)
82. Han, J.T., Lee, D.H., Ryu, C.Y., Cho, K.: Fabrication of superhydrophobic surface from a
supramolecular organosilane with quadruple hydrogen bonding. J. Am. Chem. Soc. 126 (15),
4796-4797 (2004)
83. Hikita, M., Tanaka, K., Nakamura, T., Kajiyama, T., Takahara, A.: Super-liquid-repellent
surfaces prepared by colloidal silica nanoparticles covered with fluoroalkyl groups. Langmuir
21 (16), 7299-7302 (2005)
84. Li, Y., Cai, W., Cao, B., Duan, G., Sun, F.: Fabrication of the periodic nanopillar arrays by
heat-induced deformation of 2D polymer colloidal monolayer. Polymer 46 (26), 12033-12036
(2005)
85. Nakajima, A., Saiki, C., Hashimoto, K., Watanabe, T.: Processing of roughened silica film
by coagulated colloidal silica for super-hydrophobic coating. J. Mater. Sci. Lett. 20 (21),
1975-1977 (2001)
86. Jiang, L., Zhao, Y., Zhai, J.: A lotus-leaf-like superhydrophobic surface: a porous micro-
sphere/nanofiber composite film prepared by electrohydrodynamics. Angew. Chem. Int. Ed.
43 (33), 4338-4341 (2004)
87. Singh, A., Steely, L., Allcock, H.R.: Poly[bis(2,2,2-trifluoroethoxy)phosphazene] superhy-
drophobic nanofibers. Langmuir 21 (25), 11604-11607 (2005)
88. Acatay, K., Simsek, E., Ow-Yang, C., Menceloglu, Y.Z.: Tunable, superhydrophobically
stable polymeric surfaces by electrospinning. Angew. Chem. Int. Ed. 43 (39), 5210-5213
(2004)
89. Suh, K.Y., Jon, S.: Control over wettability of polyethylene glycol surfaces using capillary
lithography. Langmuir 21 (15), 6836-6841 (2005)
90. F urstner, R., Barthlott, W., Neinhuis, C., Walzel, P.: Wetting and self-cleaning properties of
artificial superhydrophobic surfaces. Langmuir 21 (3), 956-961 (2005)
91. Patankar, N.A.: On the modeling of hydrophobic contact angles on rough surfaces. Langmuir
19 (4), 1249-1253 (2003)
92. Martines, E., Seunarine, K., Morgan, H., Gadegaard, N., Wilkinson, C.D.W., Riehle, M.O.:
Superhydrophobicity and superhydrophilicity of regular nanopatterns. Nano Lett. 5 (10),
2097-2103 (2005)
93. Yoshimitsu, Z., Nakajima, A., Watanabe, T., Hashimoto, K.: Effects of surface structure on the
hydrophobicity and sliding behavior of water droplets. Langmuir 18 (15), 5818-5822 (2002)
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