Biomedical Engineering Reference
In-Depth Information
[32] Klingner, A., and F. Mugele, “Electrowetting-Induced Morphological Transitions of Fluid
Microstructures,” Journal of Applied Physics , Vol. 95, No. 5, 2004, pp. 2918-2920.
[33] Gau, H., S. Herminghaus, P. Lenz, R. Lipowsky, “Liquid morphologies on structured sur-
faces: From microchannels to microchips,” Science , Vol. 383, 1999, pp. 46- 49.
[34] Tabeling, P., and S. Chen, Introduction to Microfluidics, , New York: Cambridge University
Press, 2007.
[35] Berthier, J., and P. Silberzan, Microfluidics for Biotechnology , Norwood, MA: Artech
House, 2005.
[36] Uelzen, T., and J. Müller, “Wettability Enhancement by Rough Surfaces Generated by Thin
Film Technology,” Thin Solid Films , Vol. 434, 2003, pp. 311-315.
[37] Kim, S. H., et al., “Superhydrophobic CFx Coating Via In-Line Atmospheric RF Plasma of
He-CF4-H2,” Langmuir , Vol. 21, 2005, pp. 12213-12217.
[38] Zhu, L., et al., “Tuning Wettability and Getting Superhydrophobic Surface by Controlling
Surface Roughness with Well-Designed Microstructures,” Sensors and Actuators, A Physi-
cal , Vol. 130-131, 2006, pp. 595-600.
[39] Bico, J., U. Thiele, and D. Quéré, “Wetting of Textured Surfaces,” Colloids and Surfaces A:
Physicochemical and Engineering Aspects , Vol. 206, 2002, pp. 41- 46.
[40] Bico, J., C. Marzolin, and D. Quéré, “Pearl Drops,” Europhys. Lett ., Vol. 47, No. 2,
pp. 220-226, 1999.
[41] Bico, J., C. Tordeux, and D. Quéré, “Rough Wetting,” Europhys. Lett ., Vol. 55, No. 2,
2001, pp. 214-220.
[42] Patankar, N. A., “Transition Between Superhydrophobic States on Rough Surfaces,” Lang-
muir , Vol. 20, 2004, pp. 7097-7102.
[43] Patankar, N. A., and Y. Chen, “Numerical Simulation of Droplet Shapes on Rough Sur-
faces,” Proceedings of the 2002 Nanotech Conference , Puerto Rico, April 21-25, 2002,
pp. 116-119.
[44] Patankar, N. A., “On the Modelling of Hydrophobic Contact Angles on Rough Surfaces,”
Langmuir , Vol. 19, 2003, pp. 1249-1253.
[45] Barthlott, W., and C. Neinhuis, “Purity of the Sacred Lotus, or Escape from Contamination
in Biological Surfaces,” Planta , Vol. 202, 1997, pp. 1-8.
[46] Onda, T., et al., “Super Water-Repellent Surfaces,” Langmuir , Vol. 12, No. 9, 1996,
pp. 2125-2127.
[47] Shibuichi, S., et al., “Super Water-Repellent Surfaces Resulting from Fractal Structures,”
J. Phys. Chem ., Vol. 100, 1996, pp. 19512-19517.
[48] Brandeis University, http://rsp.math.brandeis.edu/3D-XplorMath/Surface/gallery_m.html.
[49] Hewgill, D. E., “Computing Surfaces of Constant Mean Curvature with Singularities,”
Computing , Vol. 32, 1984, pp. 81-92.
[50] Patankar, N. A., and Y. Chen, “Numerical Simulation of Droplets Shapes on Rough Sur-
faces,” Nanotech 2002, Technical Proceedings of the 5th International Conference on
Modeling and Simulation of Microsystems , 2002, pp. 116-119.
Search WWH ::




Custom Search