The ability of gecko lizards to adhere to a vertical solid surface comes from their remarkable feet with aligned microscopic elastic hairs. By using carbon nanotube arrays that are dominated by a straight body segment but with curly entangled top, we have created gecko-foot-mimetic dry adhesives that show macroscopic adhesive forces of ???100 newtons per square centimeter, almost 10 times that of a gecko foot, and a much stronger shear adhesion force than the normal adhesion force, to ensure strong binding along the shear direction and easy lifting in the normal direction. This anisotropic force distribution is due to the shear-induced alignments of the curly segments of the nanotubes. The mimetic adhesives can be alternatively binding-on a...
Recently, there has been significant interest in developing dry adhesives mimicking the gecko adhesi...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...
We have developed a synthetic gecko tape by transferring micropatterned carbon nanotube arrays onto ...
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...
The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces ...
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 gecko's extraordinary climbing ability has inspired scientists to develop synthetic dry adhesive...
The design of reversible adhesives requires both stickiness and the ability to remain clean from dus...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
An overview of the recent progress in the development of gecko-inspired synthetic dry adhesives is p...
The amazing climbing ability of geckos has attracted the interest ofphilosophers and scientists alik...
Recently, there has been significant interest in developing dry adhesives mimicking the gecko adhesi...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...
We have developed a synthetic gecko tape by transferring micropatterned carbon nanotube arrays onto ...
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...
The adhesive properties of the gecko foot have inspired designs of advanced micropatterned surfaces ...
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 gecko's extraordinary climbing ability has inspired scientists to develop synthetic dry adhesive...
The design of reversible adhesives requires both stickiness and the ability to remain clean from dus...
We have systematically studied the macroscopic adhesive properties of vertically aligned nanotube ar...
An overview of the recent progress in the development of gecko-inspired synthetic dry adhesives is p...
The amazing climbing ability of geckos has attracted the interest ofphilosophers and scientists alik...
Recently, there has been significant interest in developing dry adhesives mimicking the gecko adhesi...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...