The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., feature size, architecture) and material properties (e.g., stiffness). Over the last few decades, researchers have been mimicking the geometry and material properties of biological micropatterned adhesives. The performance of these biomimetic micropatterned adhesives is usually tested on hard substrates. Much less is known about the effect of geometry, feature size, and material properties on the performance of micropatterned adhesives when the substrate is deformable. Here, micropatterned adhesives of two stiffness degrees (Young's moduli of 280 and 580 kPa) were fabricated from poly(dimethylsiloxane) (PDMS) and tested on soft poly(vinyl alcoh...
In this work, the adhesion of biomimetic polydimethylsiloxane (PDMS) pillar arrays with mushroom-sha...
For over a decade the use of bio inspired adhesives have been explored to achieve high reversable at...
Micropillar adhesives have gained increasing attention because they generate high pull-off forces. T...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
Reversible attachment on soft substrates is useful in a range of applications, including soft roboti...
Reversible attachment on soft substrates is useful in a range of applications, including soft roboti...
Reversible attachment on soft substrates is useful in a range of applications, including soft roboti...
In this work, the adhesion of biomimetic polydimethylsiloxane (PDMS) pillar arrays with mushroom-sha...
In this work, the adhesion of biomimetic polydimethylsiloxane (PDMS) pillar arrays with mushroom-sha...
For over a decade the use of bio inspired adhesives have been explored to achieve high reversable at...
Micropillar adhesives have gained increasing attention because they generate high pull-off forces. T...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
The adhesiveness of biological micropatterned adhesives primarily relies on their geometry (e.g., fe...
Reversible attachment on soft substrates is useful in a range of applications, including soft roboti...
Reversible attachment on soft substrates is useful in a range of applications, including soft roboti...
Reversible attachment on soft substrates is useful in a range of applications, including soft roboti...
In this work, the adhesion of biomimetic polydimethylsiloxane (PDMS) pillar arrays with mushroom-sha...
In this work, the adhesion of biomimetic polydimethylsiloxane (PDMS) pillar arrays with mushroom-sha...
For over a decade the use of bio inspired adhesives have been explored to achieve high reversable at...
Micropillar adhesives have gained increasing attention because they generate high pull-off forces. T...