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Erschienen in: Cellulose 6/2017

03.04.2017 | Original Paper

Fabrication of hydrophobic cotton fabrics inspired by polyphenol chemistry

verfasst von: Shaojin Gu, Ling Yang, Wei Huang, Yiming Bu, Dongzhi Chen, Jingjing Huang, Yingshan Zhou, Weilin Xu

Erschienen in: Cellulose | Ausgabe 6/2017

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Abstract

Highly hydrophobic cotton fabrics were fabricated via coordination assembly of tannic acid (TA) and Fe(III) followed by treatment with 1-octadecylamine. Scanning electron microscopy analysis showed that this novel Fe(III)/TA metalorganic system coated the cotton fabrics and affected the surface roughness, making the textiles hydrophobic. This approach is facile and low cost without substrate limitation or addition of fluorinated chemicals. Wettability tests showed that the highly hydrophobic textiles were robustly resistant to acid, alkaline, and salt corrosion and long-term laundering. In addition, the obtained highly hydrophobic surface could effectively separate oil–water mixtures by simple filtration. The simplicity and versatility of this direct approach inspired by polyphenol chemistry may facilitate fast development of functional textiles for many applications.

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Literatur
Zurück zum Zitat Chen D, Chen F, Zhang H, Yin X, Zhou Y (2016a) Preparation and characterization of novel hydrophobic cellulose fabrics with polyvinylsilsesquioxane functional coatings. Cellulose 23:941–953. doi:10.1007/s10570-015-0820-y CrossRef Chen D, Chen F, Zhang H, Yin X, Zhou Y (2016a) Preparation and characterization of novel hydrophobic cellulose fabrics with polyvinylsilsesquioxane functional coatings. Cellulose 23:941–953. doi:10.​1007/​s10570-015-0820-y CrossRef
Zurück zum Zitat Das C, Jain B, Krishnamoorthy K (2015) Phenols from green tea as a dual functional coating to prepare devices for energy storage and molecular separation. Chem Commun 51:11662–11664. doi:10.1039/C5CC03108G CrossRef Das C, Jain B, Krishnamoorthy K (2015) Phenols from green tea as a dual functional coating to prepare devices for energy storage and molecular separation. Chem Commun 51:11662–11664. doi:10.​1039/​C5CC03108G CrossRef
Zurück zum Zitat Duan W, Xie A, Shen Y, Wang X, Wang F, Zhang Y, Li J (2011) Fabrication of superhydrophobic cotton fabrics with UV protection based on CeO2 particles. Ind Eng Chem Res 50:4441–4445. doi:10.1021/ie101924v CrossRef Duan W, Xie A, Shen Y, Wang X, Wang F, Zhang Y, Li J (2011) Fabrication of superhydrophobic cotton fabrics with UV protection based on CeO2 particles. Ind Eng Chem Res 50:4441–4445. doi:10.​1021/​ie101924v CrossRef
Zurück zum Zitat Ejima H et al (2013) One-step assembly of coordination complexes for versatile film and particle engineering. Science 341:154–157CrossRef Ejima H et al (2013) One-step assembly of coordination complexes for versatile film and particle engineering. Science 341:154–157CrossRef
Zurück zum Zitat Hong D, Bae K, Hong S-P, Park JH, Choi IS, Cho WK (2014) Mussel-inspired, perfluorinated polydopamine for self-cleaning coating on various substrates. Chem Commun 50:11649–11652. doi:10.1039/C4CC02775B CrossRef Hong D, Bae K, Hong S-P, Park JH, Choi IS, Cho WK (2014) Mussel-inspired, perfluorinated polydopamine for self-cleaning coating on various substrates. Chem Commun 50:11649–11652. doi:10.​1039/​C4CC02775B CrossRef
Zurück zum Zitat Huang JY et al (2015a) Robust superhydrophobic TiO2@fabrics for UV shielding, self-cleaning and oil–water separation. J Mater Chem A 3:2825–2832. doi:10.1039/C4TA05332J CrossRef Huang JY et al (2015a) Robust superhydrophobic TiO2@fabrics for UV shielding, self-cleaning and oil–water separation. J Mater Chem A 3:2825–2832. doi:10.​1039/​C4TA05332J CrossRef
Zurück zum Zitat Huang S, Li X, Jiao Y, Shi J (2015b) Fabrication of a superhydrophobic, fire-resistant, and mechanical robust sponge upon polyphenol chemistry for efficiently absorbing oils/organic solvents. Ind Eng Chem Res 54:1842–1848. doi:10.1021/ie504812p CrossRef Huang S, Li X, Jiao Y, Shi J (2015b) Fabrication of a superhydrophobic, fire-resistant, and mechanical robust sponge upon polyphenol chemistry for efficiently absorbing oils/organic solvents. Ind Eng Chem Res 54:1842–1848. doi:10.​1021/​ie504812p CrossRef
Zurück zum Zitat Jeon J-R, Kim J-H, Chang Y-S (2013) Enzymatic polymerization of plant-derived phenols for material-independent and multifunctional coating. J Mater Chem B 1:6501–6509. doi:10.1039/C3TB21161D CrossRef Jeon J-R, Kim J-H, Chang Y-S (2013) Enzymatic polymerization of plant-derived phenols for material-independent and multifunctional coating. J Mater Chem B 1:6501–6509. doi:10.​1039/​C3TB21161D CrossRef
Zurück zum Zitat Joung YS, Buie CR (2015) Antiwetting fabric produced by a combination of layer-by-layer assembly and electrophoretic deposition of hydrophobic nanoparticles. ACS Appl Mater Interfaces 7:20100–20110. doi:10.1021/acsami.5b05233 CrossRef Joung YS, Buie CR (2015) Antiwetting fabric produced by a combination of layer-by-layer assembly and electrophoretic deposition of hydrophobic nanoparticles. ACS Appl Mater Interfaces 7:20100–20110. doi:10.​1021/​acsami.​5b05233 CrossRef
Zurück zum Zitat Kwon S-O, Ko T-J, Yu E, Kim J, Moon M-W, Park CH (2014) Nanostructured self-cleaning lyocell fabrics with asymmetric wettability and moisture absorbency (part I). RSC Adv 4:45442–45448. doi:10.1039/C4RA08039D CrossRef Kwon S-O, Ko T-J, Yu E, Kim J, Moon M-W, Park CH (2014) Nanostructured self-cleaning lyocell fabrics with asymmetric wettability and moisture absorbency (part I). RSC Adv 4:45442–45448. doi:10.​1039/​C4RA08039D CrossRef
Zurück zum Zitat Lai Y, Tang Y, Gong J, Gong D, Chi L, Lin C, Chen Z (2012) Transparent superhydrophobic/superhydrophilic TiO2-based coatings for self-cleaning and anti-fogging. J Mater Chem 22:7420–7426. doi:10.1039/C2JM16298A CrossRef Lai Y, Tang Y, Gong J, Gong D, Chi L, Lin C, Chen Z (2012) Transparent superhydrophobic/superhydrophilic TiO2-based coatings for self-cleaning and anti-fogging. J Mater Chem 22:7420–7426. doi:10.​1039/​C2JM16298A CrossRef
Zurück zum Zitat Li S, Zhang S, Wang X (2008) Fabrication of superhydrophobic cellulose-based materials through a solution-immersion process. Langmuir 24:5585–5590. doi:10.1021/la800157t CrossRef Li S, Zhang S, Wang X (2008) Fabrication of superhydrophobic cellulose-based materials through a solution-immersion process. Langmuir 24:5585–5590. doi:10.​1021/​la800157t CrossRef
Zurück zum Zitat Li J, Yan L, Zhao Y, Zha F, Wang Q, Lei Z (2015a) One-step fabrication of robust fabrics with both-faced superhydrophobicity for the separation and capture of oil from water. Phys Chem Chem Phys 17:6451–6457. doi:10.1039/C5CP00154D CrossRef Li J, Yan L, Zhao Y, Zha F, Wang Q, Lei Z (2015a) One-step fabrication of robust fabrics with both-faced superhydrophobicity for the separation and capture of oil from water. Phys Chem Chem Phys 17:6451–6457. doi:10.​1039/​C5CP00154D CrossRef
Zurück zum Zitat Li S et al (2015b) Robust flower-like TiO2@cotton fabrics with special wettability for effective self-cleaning and versatile oil/water separation. Adv Mater Interfaces. doi:10.1002/admi.201500220 Li S et al (2015b) Robust flower-like TiO2@cotton fabrics with special wettability for effective self-cleaning and versatile oil/water separation. Adv Mater Interfaces. doi:10.​1002/​admi.​201500220
Zurück zum Zitat Lin J, Zheng C, Ye W, Wang H, Feng D, Li Q, Huan B (2015) A facile dip-coating approach to prepare SiO2/fluoropolymer coating for superhydrophobic and superoleophobic fabrics with self-cleaning property. J Appl Polym Sci. doi:10.1002/app.41458 Lin J, Zheng C, Ye W, Wang H, Feng D, Li Q, Huan B (2015) A facile dip-coating approach to prepare SiO2/fluoropolymer coating for superhydrophobic and superoleophobic fabrics with self-cleaning property. J Appl Polym Sci. doi:10.​1002/​app.​41458
Zurück zum Zitat Liu Y, Ai K, Lu L (2014b) Polydopamine and its derivative materials: synthesis and promising applications in energy, environmental, and biomedical fields. Chem Rev 114:5057–5115. doi:10.1021/cr400407a CrossRef Liu Y, Ai K, Lu L (2014b) Polydopamine and its derivative materials: synthesis and promising applications in energy, environmental, and biomedical fields. Chem Rev 114:5057–5115. doi:10.​1021/​cr400407a CrossRef
Zurück zum Zitat Liu Y et al (2015) One-step modification of fabrics with bioinspired polydopamine@octadecylamine nanocapsules for robust and healable self-cleaning performance. Small 11:426–431. doi:10.1002/smll.201402383 CrossRef Liu Y et al (2015) One-step modification of fabrics with bioinspired polydopamine@octadecylamine nanocapsules for robust and healable self-cleaning performance. Small 11:426–431. doi:10.​1002/​smll.​201402383 CrossRef
Zurück zum Zitat Manatunga DC, de Silva RM, de Silva KMN (2016) Double layer approach to create durable superhydrophobicity on cotton fabric using nano silica and auxiliary non fluorinated materials. Appl Surf Sci 360(Part B):777–788. doi:10.1016/j.apsusc.2015.11.068 CrossRef Manatunga DC, de Silva RM, de Silva KMN (2016) Double layer approach to create durable superhydrophobicity on cotton fabric using nano silica and auxiliary non fluorinated materials. Appl Surf Sci 360(Part B):777–788. doi:10.​1016/​j.​apsusc.​2015.​11.​068 CrossRef
Zurück zum Zitat Pranantyo D, Xu LQ, Neoh K-G, Kang E-T, Ng YX, Teo SL-M (2015) Tea stains-inspired initiator primer for surface grafting of antifouling and antimicrobial polymer brush coatings. Biomacromolecules 16:723–732. doi:10.1021/bm501623c CrossRef Pranantyo D, Xu LQ, Neoh K-G, Kang E-T, Ng YX, Teo SL-M (2015) Tea stains-inspired initiator primer for surface grafting of antifouling and antimicrobial polymer brush coatings. Biomacromolecules 16:723–732. doi:10.​1021/​bm501623c CrossRef
Zurück zum Zitat Rahim MA, Ejima H, Cho KL, Kempe K, Müllner M, Best JP, Caruso F (2014) Coordination-driven multistep assembly of metal-polyphenol films and capsules. Chem Mater 26:1645–1653. doi:10.1021/cm403903m CrossRef Rahim MA, Ejima H, Cho KL, Kempe K, Müllner M, Best JP, Caruso F (2014) Coordination-driven multistep assembly of metal-polyphenol films and capsules. Chem Mater 26:1645–1653. doi:10.​1021/​cm403903m CrossRef
Zurück zum Zitat Sasaki K, Tenjimbayashi M, Manabe K, Shiratori S (2016) Asymmetric superhydrophobic/superhydrophilic cotton fabrics designed by spraying polymer and nanoparticles. ACS Appl Mater Interfaces 8:651–659. doi:10.1021/acsami.5b09782 CrossRef Sasaki K, Tenjimbayashi M, Manabe K, Shiratori S (2016) Asymmetric superhydrophobic/superhydrophilic cotton fabrics designed by spraying polymer and nanoparticles. ACS Appl Mater Interfaces 8:651–659. doi:10.​1021/​acsami.​5b09782 CrossRef
Zurück zum Zitat Shutava T, Prouty M, Kommireddy D, Lvov Y (2005) pH responsive decomposable layer-by-layer nanofilms and capsules on the basis of tannic acid. Macromolecules 38:2850–2858. doi:10.1021/ma047629x CrossRef Shutava T, Prouty M, Kommireddy D, Lvov Y (2005) pH responsive decomposable layer-by-layer nanofilms and capsules on the basis of tannic acid. Macromolecules 38:2850–2858. doi:10.​1021/​ma047629x CrossRef
Zurück zum Zitat Sileika TS, Barrett DG, Zhang R, Lau KHA, Messersmith PB (2013) Colorless multifunctional coatings inspired by polyphenols found in tea, chocolate, and wine. Angew Chem Int Ed 52:10766–10770. doi:10.1002/anie.201304922 CrossRef Sileika TS, Barrett DG, Zhang R, Lau KHA, Messersmith PB (2013) Colorless multifunctional coatings inspired by polyphenols found in tea, chocolate, and wine. Angew Chem Int Ed 52:10766–10770. doi:10.​1002/​anie.​201304922 CrossRef
Zurück zum Zitat Teisala H, Tuominen M, Kuusipalo J (2014) Superhydrophobic coatings on cellulose-based materials: fabrication, properties, and applications. Adv Mater Interfaces. doi:10.1002/admi.201300026 Teisala H, Tuominen M, Kuusipalo J (2014) Superhydrophobic coatings on cellulose-based materials: fabrication, properties, and applications. Adv Mater Interfaces. doi:10.​1002/​admi.​201300026
Zurück zum Zitat Vasiljević J, Zorko M, Tomšič B, Jerman I, Simončič B (2016) Fabrication of the hierarchically roughened bumpy-surface topography for the long-lasting highly oleophobic “lotus effect” on cotton fibres. Cellulose 23:3301–3318. doi:10.1007/s10570-016-1007-x CrossRef Vasiljević J, Zorko M, Tomšič B, Jerman I, Simončič B (2016) Fabrication of the hierarchically roughened bumpy-surface topography for the long-lasting highly oleophobic “lotus effect” on cotton fibres. Cellulose 23:3301–3318. doi:10.​1007/​s10570-016-1007-x CrossRef
Zurück zum Zitat Wang J, Chen Y (2015) Oil–water separation capability of superhydrophobic fabrics fabricated via combining polydopamine adhesion with lotus-leaf-like structure. J Appl Polym Sci 132:355–365. doi:10.1002/app.42614 Wang J, Chen Y (2015) Oil–water separation capability of superhydrophobic fabrics fabricated via combining polydopamine adhesion with lotus-leaf-like structure. J Appl Polym Sci 132:355–365. doi:10.​1002/​app.​42614
Zurück zum Zitat Wang H et al (2008) One-step coating of fluoro-containing silica nanoparticles for universal generation of surface superhydrophobicity. Chem Commun 7:877–879. doi:10.1039/B714352D CrossRef Wang H et al (2008) One-step coating of fluoro-containing silica nanoparticles for universal generation of surface superhydrophobicity. Chem Commun 7:877–879. doi:10.​1039/​B714352D CrossRef
Zurück zum Zitat Wang H, Ding J, Xue Y, Wang X, Lin T (2010) Superhydrophobic fabrics from hybrid silica sol-gel coatings: Structural effect of precursors on wettability and washing durability. J Mater Res 25:1336–1343. doi:10.1557/JMR.2010.0169 CrossRef Wang H, Ding J, Xue Y, Wang X, Lin T (2010) Superhydrophobic fabrics from hybrid silica sol-gel coatings: Structural effect of precursors on wettability and washing durability. J Mater Res 25:1336–1343. doi:10.​1557/​JMR.​2010.​0169 CrossRef
Zurück zum Zitat Wang B et al (2013) Methodology for robust superhydrophobic fabrics and sponges from in situ growth of transition metal/metal oxide nanocrystals with thiol modification and their applications in oil/water separation. ACS Appl Mater Interfaces 5:1827–1839. doi:10.1021/am303176a CrossRef Wang B et al (2013) Methodology for robust superhydrophobic fabrics and sponges from in situ growth of transition metal/metal oxide nanocrystals with thiol modification and their applications in oil/water separation. ACS Appl Mater Interfaces 5:1827–1839. doi:10.​1021/​am303176a CrossRef
Zurück zum Zitat Wang L, Xi GH, Wan SJ, Zhao CH, Liu XD (2014) Asymmetrically superhydrophobic cotton fabrics fabricated by mist polymerization of lauryl methacrylate. Cellulose 21:2983–2994. doi:10.1007/s10570-014-0275-6 CrossRef Wang L, Xi GH, Wan SJ, Zhao CH, Liu XD (2014) Asymmetrically superhydrophobic cotton fabrics fabricated by mist polymerization of lauryl methacrylate. Cellulose 21:2983–2994. doi:10.​1007/​s10570-014-0275-6 CrossRef
Zurück zum Zitat Xi G, Fan W, Wang L, Liu X, Endo T (2015) Fabrication of asymmetrically superhydrophobic cotton fabrics via mist copolymerization of 2,2,2-trifluoroethyl methacrylate. J Polym Sci Part A Polym Chem 53:1862–1871. doi:10.1002/pola.27632 CrossRef Xi G, Fan W, Wang L, Liu X, Endo T (2015) Fabrication of asymmetrically superhydrophobic cotton fabrics via mist copolymerization of 2,2,2-trifluoroethyl methacrylate. J Polym Sci Part A Polym Chem 53:1862–1871. doi:10.​1002/​pola.​27632 CrossRef
Zurück zum Zitat Xu G, Pranantyo D, Zhang B, Xu L, Neoh K-G, Kang E-T (2016a) Tannic acid anchored layer-by-layer covalent deposition of parasin I peptide for antifouling and antimicrobial coatings. RSC Adv 6:14809–14818. doi:10.1039/c5ra23374g CrossRef Xu G, Pranantyo D, Zhang B, Xu L, Neoh K-G, Kang E-T (2016a) Tannic acid anchored layer-by-layer covalent deposition of parasin I peptide for antifouling and antimicrobial coatings. RSC Adv 6:14809–14818. doi:10.​1039/​c5ra23374g CrossRef
Zurück zum Zitat Xue CH, Ji XQ, Zhang J, Ma JZ, Jia ST (2015) Biomimetic superhydrophobic surfaces by combining mussel-inspired adhesion with lotus-inspired coating. Nanotechnology 26:335602CrossRef Xue CH, Ji XQ, Zhang J, Ma JZ, Jia ST (2015) Biomimetic superhydrophobic surfaces by combining mussel-inspired adhesion with lotus-inspired coating. Nanotechnology 26:335602CrossRef
Zurück zum Zitat Yang L, Han L, Ren J, Wei H, Jia L (2015) Coating process and stability of metal-polyphenol film. Colloids Surf A Physicochem Eng Asp 484:197–205CrossRef Yang L, Han L, Ren J, Wei H, Jia L (2015) Coating process and stability of metal-polyphenol film. Colloids Surf A Physicochem Eng Asp 484:197–205CrossRef
Zurück zum Zitat Yazdanshenas ME, Shateri-Khalilabad M (2013) One-step synthesis of superhydrophobic coating on cotton fabric by ultrasound irradiation. Ind Eng Chem Res 52:12846–12854. doi:10.1021/ie401133q CrossRef Yazdanshenas ME, Shateri-Khalilabad M (2013) One-step synthesis of superhydrophobic coating on cotton fabric by ultrasound irradiation. Ind Eng Chem Res 52:12846–12854. doi:10.​1021/​ie401133q CrossRef
Zurück zum Zitat Zeng C, Wang HX, Zhou H, Lin T (2015) Self-cleaning, superhydrophobic cotton fabrics with excellent washing durability, solvent resistance and chemical stability prepared from an SU-8 derived surface coating. RSC Adv 5:61044–61050. doi:10.1039/c5ra08040a CrossRef Zeng C, Wang HX, Zhou H, Lin T (2015) Self-cleaning, superhydrophobic cotton fabrics with excellent washing durability, solvent resistance and chemical stability prepared from an SU-8 derived surface coating. RSC Adv 5:61044–61050. doi:10.​1039/​c5ra08040a CrossRef
Zurück zum Zitat Zhang Y, Li Y, Shao J, Zou C (2015) Fabrication of superhydrophobic fluorine-free films on cotton fabrics through plasma-induced grafting polymerization of 1,3,5,7-tetravinyl-1,3,5,7-tetramethylcyclotetrasiloxane. Surf Coat Technol 276:16–22. doi:10.1016/j.surfcoat.2015.06.050 CrossRef Zhang Y, Li Y, Shao J, Zou C (2015) Fabrication of superhydrophobic fluorine-free films on cotton fabrics through plasma-induced grafting polymerization of 1,3,5,7-tetravinyl-1,3,5,7-tetramethylcyclotetrasiloxane. Surf Coat Technol 276:16–22. doi:10.​1016/​j.​surfcoat.​2015.​06.​050 CrossRef
Zurück zum Zitat Zhou H, Wang H, Niu H, Gestos A, Wang X, Lin T (2012) Fluoroalkyl silane modified silicone rubber/nanoparticle composite: a super durable, robust superhydrophobic fabric coating. Adv Mater 24:2409–2412. doi:10.1002/adma.201200184 CrossRef Zhou H, Wang H, Niu H, Gestos A, Wang X, Lin T (2012) Fluoroalkyl silane modified silicone rubber/nanoparticle composite: a super durable, robust superhydrophobic fabric coating. Adv Mater 24:2409–2412. doi:10.​1002/​adma.​201200184 CrossRef
Zurück zum Zitat Zhou H, Wang H, Niu H, Gestos A, Lin T (2013) Robust, self-healing superamphiphobic fabrics prepared by two-step coating of fluoro-containing polymer, fluoroalkyl silane, and modified silica nanoparticles. Adv Funct Mater 23:1664–1670. doi:10.1002/adfm.201202030 CrossRef Zhou H, Wang H, Niu H, Gestos A, Lin T (2013) Robust, self-healing superamphiphobic fabrics prepared by two-step coating of fluoro-containing polymer, fluoroalkyl silane, and modified silica nanoparticles. Adv Funct Mater 23:1664–1670. doi:10.​1002/​adfm.​201202030 CrossRef
Metadaten
Titel
Fabrication of hydrophobic cotton fabrics inspired by polyphenol chemistry
verfasst von
Shaojin Gu
Ling Yang
Wei Huang
Yiming Bu
Dongzhi Chen
Jingjing Huang
Yingshan Zhou
Weilin Xu
Publikationsdatum
03.04.2017
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 6/2017
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-017-1274-1

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