Acknowledgements V.B., N.K.G., and E.A. contributed with conception and experimental design. V.B. performed the experiments. V.B., R.H., A.G., and R.M.M. carried out analysis and interpretation of data. V.B., R.H., A.G., and E.A. wrote the manuscript. V.B. and R.H. contributed equally to this work. V.B. acknowledges funding by SPP 1420 of the German Science Foundation DFG. E.A., N.K.G., and R.H. acknowledge funding from the European Research Council under the European Union/ERC Advanced Grant “Switch2Stick,” Agreement No. 340929.Peer reviewedPublisher PD
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The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...
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Over the last decade, geckos' remarkable ability to stick to and climb surfaces found in nature has ...
The past decade has seen rapid advancement in gecko synthetic adhesives (GSAs) and their performanc...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
Adhesive capabilities of a gecko lizard have been the subject of many studies and an inspiration for...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano-str...
The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano‐str...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano-str...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano-str...
The gecko relies on van der Waals forces to cling onto surfaces with a variety of topography and com...
To better understand the role of surface roughness and tip geometry in the adhesion of gecko synthet...
The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...
The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...
Biologically inspired, fibrillar dry adhesives continue to attract much attention as they are instru...
Over the last decade, geckos' remarkable ability to stick to and climb surfaces found in nature has ...
The past decade has seen rapid advancement in gecko synthetic adhesives (GSAs) and their performanc...
Geckos are well known for being rapid climbers that have long existed in nature. The reversible and ...
Adhesive capabilities of a gecko lizard have been the subject of many studies and an inspiration for...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano-str...
The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano‐str...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano-str...
<p>Gecko feet stick to almost anything, in almost any condition (including underwater and in space),...
The natural ability of geckos and spiders to climb almost all surfaces using the compliant, nano-str...
The gecko relies on van der Waals forces to cling onto surfaces with a variety of topography and com...
To better understand the role of surface roughness and tip geometry in the adhesion of gecko synthet...
The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...
The hierarchical arrays of mesoscale to nanoscale fibrillar structures on a gecko’s foot enable the ...