The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces with increased contact areas. We have fabricated micropatterned pillars of vertically aligned carbon nanotube forests with a range of pillar diameters, heights, and spacings (or pitch). We used nanoindentation to measure their elastic and orthogonal adhesion properties and derive their scaling behavior. The patterning of nanotube forests into pillar arrays allows a reduction of the effective modulus from 10 to 15 MPa to 0.1–1 MPa which is useful for developing maximum conformal adhesion
Pressure sensitive adhesive surfaces are often inspired by nature. Miming the toe-surface of gecko, ...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
An overview of the recent progress in the development of gecko-inspired synthetic dry adhesives is p...
The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces ...
ABSTRACT: The adhesive properties of the gecko foot have inspired designs of advanced micropatterned...
The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces ...
The ability of gecko lizards to adhere to a vertical solid surface comes from their remarkable feet ...
Hierarchical pillar arrays consisting of micrometer-sized polymer setae covered by carbon nanotubes ...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
ABSTRACT: We have systematically studied the macroscopic adhesive properties of vertically aligned n...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
The fine hair adhesive system found in nature is capable of reversibly adhering to just about any su...
We have developed a synthetic gecko tape by transferring micropatterned carbon nanotube arrays onto ...
The gecko's extraordinary climbing ability has inspired scientists to develop synthetic dry adhesive...
Pressure sensitive adhesive surfaces are often inspired by nature. Miming the toe-surface of gecko, ...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
An overview of the recent progress in the development of gecko-inspired synthetic dry adhesives is p...
The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces ...
ABSTRACT: The adhesive properties of the gecko foot have inspired designs of advanced micropatterned...
The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces ...
The ability of gecko lizards to adhere to a vertical solid surface comes from their remarkable feet ...
Hierarchical pillar arrays consisting of micrometer-sized polymer setae covered by carbon nanotubes ...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
ABSTRACT: We have systematically studied the macroscopic adhesive properties of vertically aligned n...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
The fine hair adhesive system found in nature is capable of reversibly adhering to just about any su...
We have developed a synthetic gecko tape by transferring micropatterned carbon nanotube arrays onto ...
The gecko's extraordinary climbing ability has inspired scientists to develop synthetic dry adhesive...
Pressure sensitive adhesive surfaces are often inspired by nature. Miming the toe-surface of gecko, ...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
An overview of the recent progress in the development of gecko-inspired synthetic dry adhesives is p...