Environmental benign cellulosic textiles are hampered by their tendency to absorb water, which restricts their use in functional clothing. Herein we describe a method to functionalize textile surfaces using thin, open coatings based on natural wax particles and natural polymers rendering cellulosic fabrics water-repellent while retaining their feel and breathability. The impact of curing temperature, cationic polymer and fabric properties on wetting and long-term water-repellency were studied using contact angle measurements and scanning electron microscopy. The wetting properties were correlated to roughness of the textiles using white light interferometer. X-ray photoelectron spectroscopy revealed the surface chemical composition, leading...
Cotton textiles were transformed into hydrophobic fabrics via the application of 3-chloropropylthrie...
In this paper, we report on superhydrophobic fabrics (polyester, wool and cotton) produced by a wet-...
The modification of the surface energy of textile fibers to improve functional properties such as th...
Environmental benign cellulosic textiles are hampered by their tendency to absorb water, which restr...
Herein we present a simple method to render cellulosic materials highly hydrophobic while retaining ...
Eco-friendly, sustainable products as well as energy efficient building have gained more and more in...
The coming ban on substances of high environmental concern used to provide water repellency to fabri...
The public defense on 24th April 2020 at 12:00 will be organized via remote technology. Link: https...
This work focused on developing surface treatments for various cellulosic materials, including wood,...
It is well established that the water wettability of ma-terials is governed by both the chemical com...
In this study, cellulose nanocrystals hollow microspheres (HMs) were fabricated through Pickering em...
Water-repellent cotton, jute and linen fabrics have been prepared by treating them with emulsions ma...
Water repellency is a desired feature of fabrics for certain applications in textile industry such a...
Baykara, Tarık (Dogus Author) -- Karcı, Yağmur (Dogus Author) -- Rüya Yurttaş (Dogus Author) -- Ayşe...
openThe study aims to prevent environmental induced deterioration of cellulose fabrics, linked to th...
Cotton textiles were transformed into hydrophobic fabrics via the application of 3-chloropropylthrie...
In this paper, we report on superhydrophobic fabrics (polyester, wool and cotton) produced by a wet-...
The modification of the surface energy of textile fibers to improve functional properties such as th...
Environmental benign cellulosic textiles are hampered by their tendency to absorb water, which restr...
Herein we present a simple method to render cellulosic materials highly hydrophobic while retaining ...
Eco-friendly, sustainable products as well as energy efficient building have gained more and more in...
The coming ban on substances of high environmental concern used to provide water repellency to fabri...
The public defense on 24th April 2020 at 12:00 will be organized via remote technology. Link: https...
This work focused on developing surface treatments for various cellulosic materials, including wood,...
It is well established that the water wettability of ma-terials is governed by both the chemical com...
In this study, cellulose nanocrystals hollow microspheres (HMs) were fabricated through Pickering em...
Water-repellent cotton, jute and linen fabrics have been prepared by treating them with emulsions ma...
Water repellency is a desired feature of fabrics for certain applications in textile industry such a...
Baykara, Tarık (Dogus Author) -- Karcı, Yağmur (Dogus Author) -- Rüya Yurttaş (Dogus Author) -- Ayşe...
openThe study aims to prevent environmental induced deterioration of cellulose fabrics, linked to th...
Cotton textiles were transformed into hydrophobic fabrics via the application of 3-chloropropylthrie...
In this paper, we report on superhydrophobic fabrics (polyester, wool and cotton) produced by a wet-...
The modification of the surface energy of textile fibers to improve functional properties such as th...