Enhanced tribological properties of lotus leaf-like surfaces fabricated by capillary force lithography
The surface topography of a real lotus leaf was successfully replicated using a capillarity directed soft lithographic technique. The replication was carried out on poly(methyl methacrylate) (PMMA) film coated on a silicon wafer. The friction property of the patterned surfaces was investigated on a...
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Published in | Surface engineering Vol. 23; no. 3; pp. 161 - 164 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
London, England
Taylor & Francis
01.05.2007
SAGE Publications Maney |
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Abstract | The surface topography of a real lotus leaf was successfully replicated using a capillarity directed soft lithographic technique. The replication was carried out on poly(methyl methacrylate) (PMMA) film coated on a silicon wafer. The friction property of the patterned surfaces was investigated on a microscale. Its friction coefficient was almost six times lower than that of the PMMA thin film. The reduced real area of contact projected by the patterned surface appears to be the main reason for its superior friction property. |
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AbstractList | The surface topography of a real lotus leaf was successfully replicated using a capillarity directed soft lithographic technique. The replication was carried out on poly(methyl methacrylate) (PMMA) film coated on a silicon wafer. The friction property of the patterned surfaces was investigated on a microscale. Its friction coefficient was almost six times lower than that of the PMMA thin film. The reduced real area of contact projected by the patterned surface appears to be the main reason for its superior friction property. |
Author | Yoon, E.-S. Park, S. Kim, H. J. Jeong, H. E. Kong, H. Singh, R. A. Suh, K. Y. |
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Cites_doi | 10.1007/s11249-005-7791-3 10.1021/la990782d 10.1021/ja048972k 10.1007/s11249-005-9005-4 10.1021/nl050861b 10.1088/0957-4484/15/11/033 10.1021/la050316q 10.1002/1521-4095(200109)13:18<1386::AID-ADMA1386>3.0.CO;2-X 10.1115/1.2833885 10.1098/rspa.1971.0141 10.1126/science.1078365 10.1023/A:1024409316644 10.1016/j.wear.2005.01.033 10.1006/anbo.1997.0400 |
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Keywords | BIOMIMETIC TRIBOLOGY POLYMER LITHOGRAPHY Polymer Biomimetic Lithography Surface treatment Tribology |
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References | Ando, Ino 1997; 119 Yoon, Singh, Oh, Kong 2005; 259 Suh, Kim, Lee 2001; 13 Gould 2003 Zou, Cai, Wang, Yang, Wyrobek 2005; 20 Choi, Yoo, Baek, Kim, Lee 2004; 126 Burton, Bhushan 2005; 5 Neinhuis, Barthlott 1997; 79 Nikhil, Bhushan 2004; 15 Yoon, Yang, Kong, Kim 2003; 15 Beake, Leggett 2000; 16 Sun, Luo, Xu, Ji, Ouyang, Yu, Chen 2005; 21 Erbil, Demirel, Avci, Mert 2003; 299 Johnson, Kendall, Roberts 1971; 324A Yoon, Singh, Kong, Kim, Kim, Suh, Jeong 2006; 21 bibr6-174327806X124681 bibr17-174327806X124681 bibr12-174327806X124681 bibr10-174327806X124681 Bowden F. P. (bibr14-174327806X124681) 1956 bibr3-174327806X124681 Yoon E. S. (bibr7-174327806X124681) 2005 Gould P. (bibr1-174327806X124681) 2003 bibr9-174327806X124681 bibr5-174327806X124681 bibr11-174327806X124681 bibr2-174327806X124681 Johnson K. L. (bibr16-174327806X124681) 1971; 324 Singh R. A. (bibr18-174327806X124681) bibr4-174327806X124681 bibr13-174327806X124681 bibr8-174327806X124681 bibr15-174327806X124681 |
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SubjectTerms | Applied sciences BIOMIMETIC Exact sciences and technology LITHOGRAPHY Metals. Metallurgy POLYMER Production techniques Surface treatment TRIBOLOGY |
Title | Enhanced tribological properties of lotus leaf-like surfaces fabricated by capillary force lithography |
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