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A facile approach to obtain super-hydrophobicity for cotton fiber fabrics

It is a challenging task to directly apply emulsified silicone oil to the surface of cotton fabric to obtain superhydrophobic properties. In this work, a temperature-responsive microgel was first synthesized and the particle size and distribution of the microgel, thermo-responsiveness, and hydrophob...

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Autores principales: Li, Zhengrong, Wu, Junxin, Wang, Yidi, Li, Yuxin, Huang, Gang, Fei, Bin, Xu, Zhixiong, Zhang, Yong, Li, Yangling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10028497/
https://www.ncbi.nlm.nih.gov/pubmed/36959882
http://dx.doi.org/10.1039/d2ra08189j
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author Li, Zhengrong
Wu, Junxin
Wang, Yidi
Li, Yuxin
Huang, Gang
Fei, Bin
Xu, Zhixiong
Zhang, Yong
Li, Yangling
author_facet Li, Zhengrong
Wu, Junxin
Wang, Yidi
Li, Yuxin
Huang, Gang
Fei, Bin
Xu, Zhixiong
Zhang, Yong
Li, Yangling
author_sort Li, Zhengrong
collection PubMed
description It is a challenging task to directly apply emulsified silicone oil to the surface of cotton fabric to obtain superhydrophobic properties. In this work, a temperature-responsive microgel was first synthesized and the particle size and distribution of the microgel, thermo-responsiveness, and hydrophobicity of the microgel membrane were investigated. Then, through an emulsifying PMHS/water system with microgels as a Pickering emulsifier, a series of Pickering emulsions were obtained. The results showed that the emulsion had the best stability when the microgel content was 2.14 wt% and the mass ratio of PMHS/water was 3/7. The optical microscopy showed that the oil phase could be uniformly dispersed in aqueous solution, and the liquid phase particle size was about 10–22 μm. And stratification of the Pickering emulsion did not occur when placed at room temperature for over one month. Finally, when the addition of Pickering emulsion is 50 g L(−1) and the rolling rate is 80%, through a simple two-dip-two-padding treatment, a cotton fabric can obtain the superhydrophobic effect with a static contact angle of 149.6° at 25 °C and 156.4° at 45 °C. The development of this work provides a simple method to make cotton fabric obtain superhydrophobic effects.
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spelling pubmed-100284972023-03-22 A facile approach to obtain super-hydrophobicity for cotton fiber fabrics Li, Zhengrong Wu, Junxin Wang, Yidi Li, Yuxin Huang, Gang Fei, Bin Xu, Zhixiong Zhang, Yong Li, Yangling RSC Adv Chemistry It is a challenging task to directly apply emulsified silicone oil to the surface of cotton fabric to obtain superhydrophobic properties. In this work, a temperature-responsive microgel was first synthesized and the particle size and distribution of the microgel, thermo-responsiveness, and hydrophobicity of the microgel membrane were investigated. Then, through an emulsifying PMHS/water system with microgels as a Pickering emulsifier, a series of Pickering emulsions were obtained. The results showed that the emulsion had the best stability when the microgel content was 2.14 wt% and the mass ratio of PMHS/water was 3/7. The optical microscopy showed that the oil phase could be uniformly dispersed in aqueous solution, and the liquid phase particle size was about 10–22 μm. And stratification of the Pickering emulsion did not occur when placed at room temperature for over one month. Finally, when the addition of Pickering emulsion is 50 g L(−1) and the rolling rate is 80%, through a simple two-dip-two-padding treatment, a cotton fabric can obtain the superhydrophobic effect with a static contact angle of 149.6° at 25 °C and 156.4° at 45 °C. The development of this work provides a simple method to make cotton fabric obtain superhydrophobic effects. The Royal Society of Chemistry 2023-03-21 /pmc/articles/PMC10028497/ /pubmed/36959882 http://dx.doi.org/10.1039/d2ra08189j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Zhengrong
Wu, Junxin
Wang, Yidi
Li, Yuxin
Huang, Gang
Fei, Bin
Xu, Zhixiong
Zhang, Yong
Li, Yangling
A facile approach to obtain super-hydrophobicity for cotton fiber fabrics
title A facile approach to obtain super-hydrophobicity for cotton fiber fabrics
title_full A facile approach to obtain super-hydrophobicity for cotton fiber fabrics
title_fullStr A facile approach to obtain super-hydrophobicity for cotton fiber fabrics
title_full_unstemmed A facile approach to obtain super-hydrophobicity for cotton fiber fabrics
title_short A facile approach to obtain super-hydrophobicity for cotton fiber fabrics
title_sort facile approach to obtain super-hydrophobicity for cotton fiber fabrics
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10028497/
https://www.ncbi.nlm.nih.gov/pubmed/36959882
http://dx.doi.org/10.1039/d2ra08189j
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