We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsiloxane (PDMS) surfaces with tunable adhesion by a femtosecond laser. These surfaces are composed of superhydrophobic laser-induced structures and hydrophobic unstructured square array. The femtosecond laser structured domain shows superhydrophobicity with ultralow water adhesion, while the nonstructured flat PDMS shows ordinary hydrophobicity with ultrahigh water adhesion. By adjusting the relative area fraction of laser structured and nonstructured domains, the as-prepared superhydrophobic surfaces show tunable water adhesion that ranges from ultralow to ultrahigh, on which the sliding angle can be controlled from 1° to 90° (a water droplet ca...
Wetting has been studied in various fields: chemical industry, automobile manufacturing, food compan...
Wetting has been studied in various fields: chemical industry, automobile manufacturing, food compan...
Lotus flowers, rose petals, some plant leaves and insects have a naturally super-hydrophobic surface...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
Superhydrophobic surfaces with tunable water adhesion have attracted much interest in fundamental re...
This paper presents a one-step method to fabricate superhydrophobic surfaces with extremely controll...
Although superhydrophobic surfaces have been extensively studied in the past, few studies have achie...
Superhydrophobic surfaces have important applications in generating anti-icing properties, preventin...
Superhydrophobic surfaces have important applications in generating anti-icing properties, preventin...
Wetting has been studied in various fields: chemical industry, automobile manufacturing, food compan...
Wetting has been studied in various fields: chemical industry, automobile manufacturing, food compan...
Lotus flowers, rose petals, some plant leaves and insects have a naturally super-hydrophobic surface...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
We present a rapid, facile, and simple method to realize superhydrophobic patterned polydimethylsilo...
Superhydrophobic surfaces with tunable water adhesion have attracted much interest in fundamental re...
This paper presents a one-step method to fabricate superhydrophobic surfaces with extremely controll...
Although superhydrophobic surfaces have been extensively studied in the past, few studies have achie...
Superhydrophobic surfaces have important applications in generating anti-icing properties, preventin...
Superhydrophobic surfaces have important applications in generating anti-icing properties, preventin...
Wetting has been studied in various fields: chemical industry, automobile manufacturing, food compan...
Wetting has been studied in various fields: chemical industry, automobile manufacturing, food compan...
Lotus flowers, rose petals, some plant leaves and insects have a naturally super-hydrophobic surface...