Title: Patterned Surfaces with Pillars with Controlled 3D Tip Geometry Mimicking Bioattachment Devices
Abstract: Advanced MaterialsVolume 19, Issue 15 p. 1973-1977 Communication Patterned Surfaces with Pillars with Controlled 3D Tip Geometry Mimicking Bioattachment Devices† A. del Campo, A. del Campo [email protected] Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this authorC. Greiner, C. Greiner Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this authorI. Álvarez, I. Álvarez Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this authorE. Arzt, E. Arzt Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this author A. del Campo, A. del Campo [email protected] Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this authorC. Greiner, C. Greiner Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this authorI. Álvarez, I. Álvarez Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this authorE. Arzt, E. Arzt Max Planck Institute for Metals Research, Heisenbergstraße 3, 70569 Stuttgart (Germany)Search for more papers by this author First published: 12 July 2007 https://doi.org/10.1002/adma.200602476Citations: 200 † The authors thank Melanie Wirkner for making some of the lithographic SU-8 templates, Dr. M. Schaub and Dr. M. Grünwald from Heraeus Kulzer (Dormagen) for providing Provil Novo and P2 materials, Dr. A. Persadko for building the adhesion test equipment, M. Mannsberger and D. Drotlef for helping in the fabrication process and M. Riek and Dr. R. Kemkemer for support in the clean-room activities. AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Graphical Abstract Structured surfaces with 3D pillars with different geometries resembling those found in biological-attachment devices are microfabricated and their adhesion performance is tested (see figure). This work provides the first experimental evidence of the influence of the contact shape on the adhesion of structured surfaces and paves the road to a better understanding of biological-attachment systems and to optimum designs of artificial analogues. REFERENCES 1 R. E. Ritzmann, S. Gorb, R. D. Quinn, Arthropod Struct. 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Hosoda, B. N. J. Persson, Phys. Rev. Lett. 2005, 95. Citing Literature Volume19, Issue15August, 2007Pages 1973-1977 ReferencesRelatedInformation
Publication Year: 2007
Publication Date: 2007-07-12
Language: en
Type: article
Indexed In: ['crossref']
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Cited By Count: 220
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