Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces
10.1021/la1050783
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sg-nus-scholar.10635-894222023-10-29T21:15:39Z Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces Dawood, M.K. Zheng, H. Liew, T.H. Leong, K.C. Foo, Y.L. Rajagopalan, R. Khan, S.A. Choi, W.K. CHEMICAL & BIOMOLECULAR ENGINEERING SINGAPORE-MIT ALLIANCE ELECTRICAL & COMPUTER ENGINEERING 10.1021/la1050783 Langmuir 27 7 4126-4133 LANGD 2014-10-09T06:53:37Z 2014-10-09T06:53:37Z 2011-04-05 Article Dawood, M.K., Zheng, H., Liew, T.H., Leong, K.C., Foo, Y.L., Rajagopalan, R., Khan, S.A., Choi, W.K. (2011-04-05). Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces. Langmuir 27 (7) : 4126-4133. ScholarBank@NUS Repository. https://doi.org/10.1021/la1050783 07437463 http://scholarbank.nus.edu.sg/handle/10635/89422 000288970900116 Scopus |
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10.1021/la1050783 |
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CHEMICAL & BIOMOLECULAR ENGINEERING |
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CHEMICAL & BIOMOLECULAR ENGINEERING Dawood, M.K. Zheng, H. Liew, T.H. Leong, K.C. Foo, Y.L. Rajagopalan, R. Khan, S.A. Choi, W.K. |
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Dawood, M.K. Zheng, H. Liew, T.H. Leong, K.C. Foo, Y.L. Rajagopalan, R. Khan, S.A. Choi, W.K. |
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Dawood, M.K. Zheng, H. Liew, T.H. Leong, K.C. Foo, Y.L. Rajagopalan, R. Khan, S.A. Choi, W.K. Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
author_sort |
Dawood, M.K. |
title |
Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
title_short |
Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
title_full |
Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
title_fullStr |
Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
title_full_unstemmed |
Mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
title_sort |
mimicking both petal and lotus effects on a single silicon substrate by tuning the wettability of nanostructured surfaces |
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2014 |
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http://scholarbank.nus.edu.sg/handle/10635/89422 |
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1781785329203675136 |