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Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating

Superhydrophobic coatings have drawn much attention in recent years for their widespread potential applications. However, there are challenges to find a simple and cost-effective approach to prepare superhydrophobic materials and coatings using natural polymer. Herein, we prepared a kraft lignin-bas...

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Autores principales: Liu, Xue, Gao, Chao, Fu, Chenglong, Xi, Yuebin, Fatehi, Pedram, Zhao, Joe R., Wang, Shoujuan, Gibril, Magdi E., Kong, Fangong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877995/
https://www.ncbi.nlm.nih.gov/pubmed/35209240
http://dx.doi.org/10.3390/molecules27041440
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author Liu, Xue
Gao, Chao
Fu, Chenglong
Xi, Yuebin
Fatehi, Pedram
Zhao, Joe R.
Wang, Shoujuan
Gibril, Magdi E.
Kong, Fangong
author_facet Liu, Xue
Gao, Chao
Fu, Chenglong
Xi, Yuebin
Fatehi, Pedram
Zhao, Joe R.
Wang, Shoujuan
Gibril, Magdi E.
Kong, Fangong
author_sort Liu, Xue
collection PubMed
description Superhydrophobic coatings have drawn much attention in recent years for their widespread potential applications. However, there are challenges to find a simple and cost-effective approach to prepare superhydrophobic materials and coatings using natural polymer. Herein, we prepared a kraft lignin-based superhydrophobic powder via modifying kraft lignin through 1H, 1H, 2H, 2H-perfluorodecyl-triethoxysilane (PFDTES) substitution reaction, and constructed superhydrophobic coatings by direct spraying the suspended PFDTES-Lignin powder on different substrates, including glass, wood, metal and paper. The prepared lignin-based coatings have excellent repellency to water, with a water contact angle of 164.7°, as well as good friction resistance, acid resistance, alkali resistance, salt resistance properties and quite good self-cleaning performance. After 30 cycles of sand friction or being stayed in 2 mol/L HCl, 0.25 mol/L NaOH and 2 mol/L NaCl solution for 30 min, the coatings still retain super hydrophobic capability, with contact angles higher than 150°. The superhydrophobic performance of PFDTES-Lignin coatings is mainly attributed to the constructed high surface roughness and the low surface energy afforded by modified lignin. This lignin-based polymer coating is low-cost, scalable, and has huge potential application in different fields, providing a simple way for the value-added utilization of kraft lignin.
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spelling pubmed-88779952022-02-26 Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating Liu, Xue Gao, Chao Fu, Chenglong Xi, Yuebin Fatehi, Pedram Zhao, Joe R. Wang, Shoujuan Gibril, Magdi E. Kong, Fangong Molecules Article Superhydrophobic coatings have drawn much attention in recent years for their widespread potential applications. However, there are challenges to find a simple and cost-effective approach to prepare superhydrophobic materials and coatings using natural polymer. Herein, we prepared a kraft lignin-based superhydrophobic powder via modifying kraft lignin through 1H, 1H, 2H, 2H-perfluorodecyl-triethoxysilane (PFDTES) substitution reaction, and constructed superhydrophobic coatings by direct spraying the suspended PFDTES-Lignin powder on different substrates, including glass, wood, metal and paper. The prepared lignin-based coatings have excellent repellency to water, with a water contact angle of 164.7°, as well as good friction resistance, acid resistance, alkali resistance, salt resistance properties and quite good self-cleaning performance. After 30 cycles of sand friction or being stayed in 2 mol/L HCl, 0.25 mol/L NaOH and 2 mol/L NaCl solution for 30 min, the coatings still retain super hydrophobic capability, with contact angles higher than 150°. The superhydrophobic performance of PFDTES-Lignin coatings is mainly attributed to the constructed high surface roughness and the low surface energy afforded by modified lignin. This lignin-based polymer coating is low-cost, scalable, and has huge potential application in different fields, providing a simple way for the value-added utilization of kraft lignin. MDPI 2022-02-21 /pmc/articles/PMC8877995/ /pubmed/35209240 http://dx.doi.org/10.3390/molecules27041440 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
Liu, Xue
Gao, Chao
Fu, Chenglong
Xi, Yuebin
Fatehi, Pedram
Zhao, Joe R.
Wang, Shoujuan
Gibril, Magdi E.
Kong, Fangong
Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating
title Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating
title_full Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating
title_fullStr Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating
title_full_unstemmed Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating
title_short Preparation and Performance of Lignin-Based Multifunctional Superhydrophobic Coating
title_sort preparation and performance of lignin-based multifunctional superhydrophobic coating
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877995/
https://www.ncbi.nlm.nih.gov/pubmed/35209240
http://dx.doi.org/10.3390/molecules27041440
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