Open Access funded by European Research Council Acknowledgements RB thanks GRADUS, Faculty 8.4. Natural Sciences, of Saarland University for partially funding his research visit to the University of California, Santa Barbara. RB would also thank to Dr. S. Khaderi for his help in setting up the model. He also thanks Dr. R. Hensel and Dr. N. Guimard for fruitful discussions and for their continuous support. EA acknowledges funding from the European Research Council under the European Union's Seventh Framework Program (FP/2007-2013)/ERC Advanced Grant no. 340929.Peer reviewedPublisher PD
Session A3“Original research ideas can be conceived from the experiences of biological evolution” is...
Acknowledgements V.B., N.K.G., and E.A. contributed with conception and experimental design. V.B. pe...
AbstractFibrous surface structures can improve the adhesion of objects to other surfaces. Animals, s...
AbstractBio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attr...
Bio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attracted mu...
The climbing abilities of geckos have inspired many researchers to develop reusable, reversible adhe...
Enhanced dry adhesion of micropatterned polymeric surfaces has been frequently demonstrated. Among t...
Experimental data have demonstrated that mushroom-shaped fibrils adhere much better to smooth substr...
Bio-inspired fibrillar surfaces with reversible adhesion to stiff substrates have been thoroughly in...
This book deals with the adhesion, friction and contact mechanics of living organisms. Further, it p...
The phenomenon of the exceptional dry adhesion achieved by natural biological materials has been wid...
We studied experimentally and theoretically the effect of different tilt angles on the adhesion of m...
Nature uses hierarchical fibrillar structures to mediate temporary adhesion to arbitrary substrates....
The superlative adhesive properties of some biological attachment systems, such as those of geckos, ...
Fibrillar structures are found on the attachment pads of insects and small reptiles. These structure...
Session A3“Original research ideas can be conceived from the experiences of biological evolution” is...
Acknowledgements V.B., N.K.G., and E.A. contributed with conception and experimental design. V.B. pe...
AbstractFibrous surface structures can improve the adhesion of objects to other surfaces. Animals, s...
AbstractBio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attr...
Bio-inspired adhesion of micropatterned surfaces due to intermolecular interactions has attracted mu...
The climbing abilities of geckos have inspired many researchers to develop reusable, reversible adhe...
Enhanced dry adhesion of micropatterned polymeric surfaces has been frequently demonstrated. Among t...
Experimental data have demonstrated that mushroom-shaped fibrils adhere much better to smooth substr...
Bio-inspired fibrillar surfaces with reversible adhesion to stiff substrates have been thoroughly in...
This book deals with the adhesion, friction and contact mechanics of living organisms. Further, it p...
The phenomenon of the exceptional dry adhesion achieved by natural biological materials has been wid...
We studied experimentally and theoretically the effect of different tilt angles on the adhesion of m...
Nature uses hierarchical fibrillar structures to mediate temporary adhesion to arbitrary substrates....
The superlative adhesive properties of some biological attachment systems, such as those of geckos, ...
Fibrillar structures are found on the attachment pads of insects and small reptiles. These structure...
Session A3“Original research ideas can be conceived from the experiences of biological evolution” is...
Acknowledgements V.B., N.K.G., and E.A. contributed with conception and experimental design. V.B. pe...
AbstractFibrous surface structures can improve the adhesion of objects to other surfaces. Animals, s...