The preparation of superhydrophobic textiles with high mechanical and chemical durability is challenging. Here, facile and fluorine-free methods, using alkali and plasma-etching treatments, followed by the addition of silica nanoparticles and tetraethyl orthosilicate (TEOS), were used to prepare superhydrophobic cotton surfaces. With different input variables and etching techniques, superhydrophobic cotton fabrics with high chemical and mechanical durability were successfully prepared, with contact angles up to 173°. A control of the surface architecture at the nanoscale in combination with a homogeneous repellent layer of TEOS in the cotton surface was achieved. The repellent properties of the as-prepared cotton remain stable under acceler...
In this work, multifunctional superamphiphobic fabrics with special wettability were constructed by ...
Water repellency is a desired feature of fabrics for certain applications in textile industry such a...
Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical proces...
Superhydrophobic cotton fabrics with a very low contact angle hysteresis were prepared using a singl...
This paper reports the application of superhydrophobic coatings on cotton fabrics and their function...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
A facile and mild dip-coating method of fabricating superhydrophobic coating for cotton textiles was...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic poly(ethylene terephthalate) (PET) textile surfaces with a self-cleaning property ...
Multifunction of cotton textiles with superhydrophobicity, UV protection, self-cleaning and oil-wate...
In this work, multifunctional superamphiphobic fabrics with special wettability were constructed by ...
Water repellency is a desired feature of fabrics for certain applications in textile industry such a...
Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical proces...
Superhydrophobic cotton fabrics with a very low contact angle hysteresis were prepared using a singl...
This paper reports the application of superhydrophobic coatings on cotton fabrics and their function...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
A facile and mild dip-coating method of fabricating superhydrophobic coating for cotton textiles was...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic textile fabrics are prepared by a simple, one-step gas phase coating procedure by w...
Superhydrophobic poly(ethylene terephthalate) (PET) textile surfaces with a self-cleaning property ...
Multifunction of cotton textiles with superhydrophobicity, UV protection, self-cleaning and oil-wate...
In this work, multifunctional superamphiphobic fabrics with special wettability were constructed by ...
Water repellency is a desired feature of fabrics for certain applications in textile industry such a...
Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical proces...