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Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F

Superrepellent surfaces, such as micro/nanostructured surfaces, are of key importance in both academia and industry for emerging applications in areas such as self-cleaning, drag reduction, and oil repellence. Engineering these surfaces is achieved through the combination of the required surface top...

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Autores principales: Mayoussi, Fadoua, Usama, Ali, Karimi, Kiana, Nekoonam, Niloofar, Goralczyk, Andreas, Zhu, Pang, Helmer, Dorothea, Rapp, Bastian E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696989/
https://www.ncbi.nlm.nih.gov/pubmed/36431388
http://dx.doi.org/10.3390/ma15227903
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author Mayoussi, Fadoua
Usama, Ali
Karimi, Kiana
Nekoonam, Niloofar
Goralczyk, Andreas
Zhu, Pang
Helmer, Dorothea
Rapp, Bastian E.
author_facet Mayoussi, Fadoua
Usama, Ali
Karimi, Kiana
Nekoonam, Niloofar
Goralczyk, Andreas
Zhu, Pang
Helmer, Dorothea
Rapp, Bastian E.
author_sort Mayoussi, Fadoua
collection PubMed
description Superrepellent surfaces, such as micro/nanostructured surfaces, are of key importance in both academia and industry for emerging applications in areas such as self-cleaning, drag reduction, and oil repellence. Engineering these surfaces is achieved through the combination of the required surface topography, such as porosity, with low-surface-energy materials. The surface topography is crucial for achieving high liquid repellence and low roll-off angles. In general, the combination of micro- and nanostructures is most promising in achieving high repellence. In this work, we report the enhancement of wetting properties of porous polymers by replication from wrinkled Parylene F (PF)-coated polydimethylsiloxane (PDMS). Fluorinated polymer foam “Fluoropor” serves as the low-surface-energy polymer. The wrinkled molds are achieved via the deposition of a thin PF layer onto the soft PDMS substrates. Through consecutive supercritical drying, superrepellent surfaces with a high surface porosity and a high water contact angle (CA) of >165° are achieved. The replicated surfaces show low roll-off angles (ROA) <10° for water and <21° for ethylene glycol. Moreover, the introduction of the micro-wrinkles to Fluoropor not only enhances its liquid repellence for water and ethylene glycol but also for liquids with low surface tension, such as n-hexadecane.
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spelling pubmed-96969892022-11-26 Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F Mayoussi, Fadoua Usama, Ali Karimi, Kiana Nekoonam, Niloofar Goralczyk, Andreas Zhu, Pang Helmer, Dorothea Rapp, Bastian E. Materials (Basel) Article Superrepellent surfaces, such as micro/nanostructured surfaces, are of key importance in both academia and industry for emerging applications in areas such as self-cleaning, drag reduction, and oil repellence. Engineering these surfaces is achieved through the combination of the required surface topography, such as porosity, with low-surface-energy materials. The surface topography is crucial for achieving high liquid repellence and low roll-off angles. In general, the combination of micro- and nanostructures is most promising in achieving high repellence. In this work, we report the enhancement of wetting properties of porous polymers by replication from wrinkled Parylene F (PF)-coated polydimethylsiloxane (PDMS). Fluorinated polymer foam “Fluoropor” serves as the low-surface-energy polymer. The wrinkled molds are achieved via the deposition of a thin PF layer onto the soft PDMS substrates. Through consecutive supercritical drying, superrepellent surfaces with a high surface porosity and a high water contact angle (CA) of >165° are achieved. The replicated surfaces show low roll-off angles (ROA) <10° for water and <21° for ethylene glycol. Moreover, the introduction of the micro-wrinkles to Fluoropor not only enhances its liquid repellence for water and ethylene glycol but also for liquids with low surface tension, such as n-hexadecane. MDPI 2022-11-09 /pmc/articles/PMC9696989/ /pubmed/36431388 http://dx.doi.org/10.3390/ma15227903 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mayoussi, Fadoua
Usama, Ali
Karimi, Kiana
Nekoonam, Niloofar
Goralczyk, Andreas
Zhu, Pang
Helmer, Dorothea
Rapp, Bastian E.
Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F
title Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F
title_full Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F
title_fullStr Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F
title_full_unstemmed Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F
title_short Superrepellent Porous Polymer Surfaces by Replication from Wrinkled Polydimethylsiloxane/Parylene F
title_sort superrepellent porous polymer surfaces by replication from wrinkled polydimethylsiloxane/parylene f
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696989/
https://www.ncbi.nlm.nih.gov/pubmed/36431388
http://dx.doi.org/10.3390/ma15227903
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