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231224s2017 xx |||||o 00| ||eng c |
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|a 10.1002/adma.201606869
|2 doi
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|a pubmed24n0902.xml
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|e rakwb
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|a eng
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|a Cao, Moyuan
|e verfasserin
|4 aut
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|a Unidirectional Wetting Properties on Multi-Bioinspired Magnetocontrollable Slippery Microcilia
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|c 2017
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|a Text
|b txt
|2 rdacontent
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|a ƒaComputermedien
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|2 rdamedia
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|a ƒa Online-Ressource
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|a Date Completed 17.01.2019
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|a Date Revised 30.09.2020
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|a published: Print-Electronic
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|a Citation Status MEDLINE
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|a © 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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|a Here, a smart fluid-controlled surface is designed, via the rational integration of the unique properties of three natural examples, i.e., the unidirectional wetting behaviors of butterfly's wing, liquid-infused "slippery" surface of the pitcher plant, and the motile microcilia of micro-organisms. Anisotropic wettability, lubricated surfaces, and magnetoresponsive microstructures are assembled into one unified system. The as-prepared surface covered by tilted microcilia achieves significant unidirectional droplet adhesion and sliding. Regulating by external magnet field, the directionality of ferromagnetic microcilia can be synergistically switched, which facilitates a continuous and omnidirectional-controllable water delivery. This work opens an avenue for applications of anisotropic wetting surfaces, such as complex-flow distribution and liquid delivery, and extend the design approach of multi-bioinspiration integration
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|a Journal Article
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|a bioinspired materials
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|a liquid infused
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|a magnetocontrollable
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|a microcilia
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|a Jin, Xu
|e verfasserin
|4 aut
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|a Peng, Yun
|e verfasserin
|4 aut
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|a Yu, Cunming
|e verfasserin
|4 aut
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|a Li, Kan
|e verfasserin
|4 aut
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|a Liu, Kesong
|e verfasserin
|4 aut
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|a Jiang, Lei
|e verfasserin
|4 aut
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|i Enthalten in
|t Advanced materials (Deerfield Beach, Fla.)
|d 1998
|g 29(2017), 23 vom: 01. Juni
|w (DE-627)NLM098206397
|x 1521-4095
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|g volume:29
|g year:2017
|g number:23
|g day:01
|g month:06
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|u http://dx.doi.org/10.1002/adma.201606869
|3 Volltext
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