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Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface

The superhydrophobic surface can be prepared by two methods; one is by reducing the surface energy, and the other is by constructing a micro-nano rough structure. To achieve high superhydrophobic performance in terms of durability, the firm combination of hydrophobic coating and substrate is particu...

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Autores principales: Xia, Yong, Zhu, Nan, Zhao, Ying, Zhu, Jiehui, Chen, Huajie, Xu, Liyun, Yao, Lirong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820876/
https://www.ncbi.nlm.nih.gov/pubmed/36614386
http://dx.doi.org/10.3390/ma16010052
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author Xia, Yong
Zhu, Nan
Zhao, Ying
Zhu, Jiehui
Chen, Huajie
Xu, Liyun
Yao, Lirong
author_facet Xia, Yong
Zhu, Nan
Zhao, Ying
Zhu, Jiehui
Chen, Huajie
Xu, Liyun
Yao, Lirong
author_sort Xia, Yong
collection PubMed
description The superhydrophobic surface can be prepared by two methods; one is by reducing the surface energy, and the other is by constructing a micro-nano rough structure. To achieve high superhydrophobic performance in terms of durability, the firm combination of hydrophobic coating and substrate is particularly important. Here, we use polydimethylsiloxane (PDMS) as a low surface energy monomer, water-borne polyurethane (WPU) as a dispersing aid, and use high-power ultrasound to disperse PDMS in water to make emulsion. The polyester matrix is etched by atmospheric plasma, dipped in PDMS emulsion, dried, and finally baked to induce PDMS on the surface of polyester fiber to cross-link into film. A series of tests on the self-cleaning polyester fabric prepared by this method show that when the concentration of PDMS is 8 g/L and the mass ratio of PDMS to WPU is 20:1, the water contact angle (WCA) reaches the maximum value of 148.2°, which decreases to 141.5° after 200 times of washing and 138.6° after 5000 times of rubbing. Before and after PDMS coating, the tensile strength of polyester fabric increases from 489.4 N to 536.4 N, and the water vapor transmission decreases from 13,535.7 g/(m(2)·d) to 12,224.3 g/(m(2)·d). This research is helpful to the large-scale production of self-cleaning polyester fabric. In the future, on the basis of this research, we will add functional powder to endow self-cleaning polyester fabric with higher hydrophobicity and other properties.
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spelling pubmed-98208762023-01-07 Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface Xia, Yong Zhu, Nan Zhao, Ying Zhu, Jiehui Chen, Huajie Xu, Liyun Yao, Lirong Materials (Basel) Article The superhydrophobic surface can be prepared by two methods; one is by reducing the surface energy, and the other is by constructing a micro-nano rough structure. To achieve high superhydrophobic performance in terms of durability, the firm combination of hydrophobic coating and substrate is particularly important. Here, we use polydimethylsiloxane (PDMS) as a low surface energy monomer, water-borne polyurethane (WPU) as a dispersing aid, and use high-power ultrasound to disperse PDMS in water to make emulsion. The polyester matrix is etched by atmospheric plasma, dipped in PDMS emulsion, dried, and finally baked to induce PDMS on the surface of polyester fiber to cross-link into film. A series of tests on the self-cleaning polyester fabric prepared by this method show that when the concentration of PDMS is 8 g/L and the mass ratio of PDMS to WPU is 20:1, the water contact angle (WCA) reaches the maximum value of 148.2°, which decreases to 141.5° after 200 times of washing and 138.6° after 5000 times of rubbing. Before and after PDMS coating, the tensile strength of polyester fabric increases from 489.4 N to 536.4 N, and the water vapor transmission decreases from 13,535.7 g/(m(2)·d) to 12,224.3 g/(m(2)·d). This research is helpful to the large-scale production of self-cleaning polyester fabric. In the future, on the basis of this research, we will add functional powder to endow self-cleaning polyester fabric with higher hydrophobicity and other properties. MDPI 2022-12-21 /pmc/articles/PMC9820876/ /pubmed/36614386 http://dx.doi.org/10.3390/ma16010052 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
Xia, Yong
Zhu, Nan
Zhao, Ying
Zhu, Jiehui
Chen, Huajie
Xu, Liyun
Yao, Lirong
Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface
title Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface
title_full Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface
title_fullStr Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface
title_full_unstemmed Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface
title_short Construction of Durable Self-Cleaning PDMS Film on Polyester Fabric Surface
title_sort construction of durable self-cleaning pdms film on polyester fabric surface
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820876/
https://www.ncbi.nlm.nih.gov/pubmed/36614386
http://dx.doi.org/10.3390/ma16010052
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