ABSTRACT: Superhydrophobic surfaces resisting water penetration into their texture under dynamic impact conditions and offering simultaneously additional functionalities can find use in a multitude of applications. We present a facile, environmentally benign, and economical fabrication of highly electrically conductive, polymer-based superhydrophobic coatings, with impressive ability to resist dynamic water impalement through droplet impact. To impart electrical conductivity, the coatings were prepared by drop casting suspensions with loadings of different kinds of carbon nanoparticles, namely, carbon black (CB), carbon nanotubes (CNT), graphene nanoplatelets (GNP) and their combinations, in a fluoropolymer dispersion. At 50 wt % either CB ...
In this study, the superhydrophobic composite coatings for self-cleaning were fabricated by mixing f...
In order to solve the problem of poor stability and repeatability of superhydrophobic films to impro...
The exceptional electrical conductivity of carbon nanotubes (CNTs) has been exploited for the prepar...
Superhydrophobic surfaces resisting water penetration into their texture under dynamic impact condit...
In this work, it is shown that the hydrophilic functionalized multiwall carbon nanotubes (MWCNs) can...
The development of a highly conductive superhydrophobic surface on a wide range of substrate materia...
We report the synthesis of superhydrophobic coatings for steel using carbon nanotube (CNT)-mesh stru...
The fabrication of superhydrophobic surfaces with mechanical durability is challenging because the s...
The physicochemical and droplet impact dynamics of superhydrophobic carbon nanotube arrays are inves...
The present study demonstrates the creation of a stable, superhydrophobic surface using the nanoscal...
A large amount of research has been devoted to developing novel superhydrophobic coatings. However, ...
Owing to their unique water repellent properties, superhydrophobic surfaces offer a vast number of p...
The wide application of superhydrophobic materials is mainly hindered by the poor mechanical robustn...
In this study, the fabrication of superhydrophobic and conductive coatings applying a facile coating...
Fully transparent and water impact resistant superhydrophobic coatings are of great importance for a...
In this study, the superhydrophobic composite coatings for self-cleaning were fabricated by mixing f...
In order to solve the problem of poor stability and repeatability of superhydrophobic films to impro...
The exceptional electrical conductivity of carbon nanotubes (CNTs) has been exploited for the prepar...
Superhydrophobic surfaces resisting water penetration into their texture under dynamic impact condit...
In this work, it is shown that the hydrophilic functionalized multiwall carbon nanotubes (MWCNs) can...
The development of a highly conductive superhydrophobic surface on a wide range of substrate materia...
We report the synthesis of superhydrophobic coatings for steel using carbon nanotube (CNT)-mesh stru...
The fabrication of superhydrophobic surfaces with mechanical durability is challenging because the s...
The physicochemical and droplet impact dynamics of superhydrophobic carbon nanotube arrays are inves...
The present study demonstrates the creation of a stable, superhydrophobic surface using the nanoscal...
A large amount of research has been devoted to developing novel superhydrophobic coatings. However, ...
Owing to their unique water repellent properties, superhydrophobic surfaces offer a vast number of p...
The wide application of superhydrophobic materials is mainly hindered by the poor mechanical robustn...
In this study, the fabrication of superhydrophobic and conductive coatings applying a facile coating...
Fully transparent and water impact resistant superhydrophobic coatings are of great importance for a...
In this study, the superhydrophobic composite coatings for self-cleaning were fabricated by mixing f...
In order to solve the problem of poor stability and repeatability of superhydrophobic films to impro...
The exceptional electrical conductivity of carbon nanotubes (CNTs) has been exploited for the prepar...