We present a new and simple method to produce superhydrophobic surfaces with ultralow hysteresis. The method involves surface modification of SU-8 using an excimer laser treatment. The modified surface is coated with a hydrophobic plasma-polymerized hexafluoropropene layer. The advancing and receding water contact angles were measured to be approximately 165°. The achieved water contact angle hysteresis was below the measurement limit. This low hysteresis can be ascribed to nanoscale debris generated during the excimer laser process
Contact angle hysteresis is addressed from two perspectives. The first is an analysis of the events ...
A method for preparing superhydrophobic surfaces containing guiding lines that control water motion ...
The study of laser textured surfaces has been carried out in the pursuit of superhydrophobic and sup...
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...
A nanosecond green laser was employed to obtain both superhydrophobic and superhydrophilic surfaces ...
The interest in superhydrophobic surfaces has grown exponentially over recent decades. Since the lot...
The interest in superhydrophobic surfaces has grown exponentially over recent decades. Since the lot...
This article belongs to the Special Issue Polymeric Materials: Surfaces, Interfaces and Bioapplicati...
In this paper we show the fabrication of hydrophobic polymeric surfaces through laser microstructuri...
In this paper we show the fabrication of hydrophobic polymeric surfaces through laser microstructuri...
AbstractIn this paper we show the fabrication of hydrophobic polymeric surfaces through laser micros...
In this paper we show the fabrication of hydrophobic polymeric surfaces through laser microstructuri...
Contact angle hysteresis is addressed from two perspectives. The first is an analysis of the events ...
A method for preparing superhydrophobic surfaces containing guiding lines that control water motion ...
The study of laser textured surfaces has been carried out in the pursuit of superhydrophobic and sup...
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...
A nanosecond green laser was employed to obtain both superhydrophobic and superhydrophilic surfaces ...
The interest in superhydrophobic surfaces has grown exponentially over recent decades. Since the lot...
The interest in superhydrophobic surfaces has grown exponentially over recent decades. Since the lot...
This article belongs to the Special Issue Polymeric Materials: Surfaces, Interfaces and Bioapplicati...
In this paper we show the fabrication of hydrophobic polymeric surfaces through laser microstructuri...
In this paper we show the fabrication of hydrophobic polymeric surfaces through laser microstructuri...
AbstractIn this paper we show the fabrication of hydrophobic polymeric surfaces through laser micros...
In this paper we show the fabrication of hydrophobic polymeric surfaces through laser microstructuri...
Contact angle hysteresis is addressed from two perspectives. The first is an analysis of the events ...
A method for preparing superhydrophobic surfaces containing guiding lines that control water motion ...
The study of laser textured surfaces has been carried out in the pursuit of superhydrophobic and sup...