The synthesis of low density polyethylene (LDPE) ultrahydrophobic surfaces with controlled roughness and transparency was described in a two steps O2 and CF4 plasmas treatment. Water contact angle as high as 171◦, contact angle hysteresis less than 4◦, and sliding angle as 4◦ were obtained on those surfaces. The surfaces with small roughness reached 85% of transparency between 400 nm and 800 nm of wavelength. Besides the dynamic dewetting experiments showed a particular behavior. While they were wet with water, the surfaces loosed their ultrahydrophobic properties. An explanation of this behavior was given according to both Wenzel and Cassie Baxter wetting states
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
The synthesis of low density polyethylene (LDPE) ultrahydrophobic surfaces with controlled roughnes...
The synthesis of low density polyethylene (LDPE) ultrahydrophobic surfaces with controlled roughnes...
The overall objective of this Ph.D. thesis is to control the wetting behavior of surfaces by explori...
In this review, the effect of chemicals, flame radiation, grafting and their combination on the surf...
The control of surface properties, especially wetting behavior, is a major issue since many practica...
A simple and inexpensive method for forming a low-density polyethylene (LDPE) superhydrophobic surfa...
International audiencePoly(tetrafluoroethylene) (PTFE) materials were exposed to low and high-energy...
Various methods for modification of polymer surfaces were studied with the objective of controlling ...
Surface properties of high density polyethylene (HDPE) and cross-linked polyethylene (XLPE) were stu...
Superhydrophobic surfaces are those that have a very low adhesion to water due to a combination of s...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
The synthesis of low density polyethylene (LDPE) ultrahydrophobic surfaces with controlled roughnes...
The synthesis of low density polyethylene (LDPE) ultrahydrophobic surfaces with controlled roughnes...
The overall objective of this Ph.D. thesis is to control the wetting behavior of surfaces by explori...
In this review, the effect of chemicals, flame radiation, grafting and their combination on the surf...
The control of surface properties, especially wetting behavior, is a major issue since many practica...
A simple and inexpensive method for forming a low-density polyethylene (LDPE) superhydrophobic surfa...
International audiencePoly(tetrafluoroethylene) (PTFE) materials were exposed to low and high-energy...
Various methods for modification of polymer surfaces were studied with the objective of controlling ...
Surface properties of high density polyethylene (HDPE) and cross-linked polyethylene (XLPE) were stu...
Superhydrophobic surfaces are those that have a very low adhesion to water due to a combination of s...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...
We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. Th...