Recent advances in bio-inspired microfibrillar adhesives have resulted in technologies that allow reliable attachment to a variety of surfaces. Because capillary and van der Waals forces are considerably weakened underwater, fibrillar adhesives are however far less effective in wet environments. Although various strategies have been proposed to achieve strong reversible underwater adhesion, strong adhesives that work both in air and underwater without additional surface treatments have yet to be developed. In this study, we report a novel design - cupped microstructures (CM) - that generates strong controllable adhesion in air and underwater. We measured the adhesive performance of cupped polyurethane microstructures with three different cu...
Instantaneous adhesion between different materials is a requirement for several applications ranging...
The rapid growth in the miniaturized mechanical and electronic devices industry has created the need...
The potential of a new design of adhesive microstructures in the micrometer range for enhanced dry a...
Underwater or wet adhesion is highly desirable for numerous applications but is counteracted by the ...
Stable and reversible adhesion to wet surfaces is challenging owing to water molecules at the contac...
In this work we report on experiments aimed at testing the cavitation hypothesis [Varenberg, M.; Gor...
A pressure-sensitive, nonreacting and nonfouling adhesive which can perform well both in air and und...
This study presents wet-responsive, shape-reconfigurable, and flexible hydrogel adhesives that exhib...
In nearly all cases of underwater adhesion, water molecules typically act as a destroyer. Thus, remo...
Here we report a new class of bio-inspired solid–liquid adhesive, obtained by simple mechanical disp...
Strong adherence to underwater or wet surfaces for applications like tissue adhesion and underwater ...
During the last few decades, wet adhesives have been developed for applications in various fields. N...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
The octopus couples controllable adhesives with intricately embedded sensing, processing, and contro...
Enhanced dry adhesion of micropatterned polymeric surfaces has been frequently demonstrated. Among t...
Instantaneous adhesion between different materials is a requirement for several applications ranging...
The rapid growth in the miniaturized mechanical and electronic devices industry has created the need...
The potential of a new design of adhesive microstructures in the micrometer range for enhanced dry a...
Underwater or wet adhesion is highly desirable for numerous applications but is counteracted by the ...
Stable and reversible adhesion to wet surfaces is challenging owing to water molecules at the contac...
In this work we report on experiments aimed at testing the cavitation hypothesis [Varenberg, M.; Gor...
A pressure-sensitive, nonreacting and nonfouling adhesive which can perform well both in air and und...
This study presents wet-responsive, shape-reconfigurable, and flexible hydrogel adhesives that exhib...
In nearly all cases of underwater adhesion, water molecules typically act as a destroyer. Thus, remo...
Here we report a new class of bio-inspired solid–liquid adhesive, obtained by simple mechanical disp...
Strong adherence to underwater or wet surfaces for applications like tissue adhesion and underwater ...
During the last few decades, wet adhesives have been developed for applications in various fields. N...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
The octopus couples controllable adhesives with intricately embedded sensing, processing, and contro...
Enhanced dry adhesion of micropatterned polymeric surfaces has been frequently demonstrated. Among t...
Instantaneous adhesion between different materials is a requirement for several applications ranging...
The rapid growth in the miniaturized mechanical and electronic devices industry has created the need...
The potential of a new design of adhesive microstructures in the micrometer range for enhanced dry a...