Zugriffsnummer 44439
Dokumenttyp Zeitschriftenartikel Open Access Hybrid
Peer Review mit Peer Review
Sprache Englisch
Titel Biomimetic combs as antiadhesive tools to manipulate nanofibers
Autor(in); Institution
Joel, Anna Christin; RWTH Aachen University, Institute of Zoology, Aachen, GERMANY
Meyer, Marco; RWTH Aachen University, Institute of Zoology, Aachen, GERMANY
Heitz, Johannes; Johannes Kepler University Linz, Institute of Applied Physics, Linz, AUSTRIA
Heiss, Alexander; Research Institute for Precious Metals and Metals Chemistry (fem), Schwaebisch Gmuend, GERMANY
Park, Daesung; 5.2, Dimensionelle Nanometrologie, PTB-Braunschweig
Adamova, Hana; RWTH Aachen University, Institute of Zoology, Aachen, GERMANY
Baumgartner, Werner; Johannes Kepler University Linz, Institute of Biomedical Mechatronics, Linz, AUSTRIA
Quelle/Jahr ACS Applied Nano Materials: 3 (2020), 4, 3395 - 3401
Availability [online only]
ISSN 2574-0970
DOI
URL
Verlag Washington, DC: American Chemical Society (ACS)
Freie Schlagworte functional morphology ; laser-induced periodic surface structures ; bionic ; van der Waals ; cribellate ; spider
Zusammenfassung Nanofibrous multifunctional materials have attracted a lot of attention because of the benefits of their special structure. Despite the diverse benefits of nanofibrous materials, their inherent stickiness to any surface is a major obstacle in producing and processing such materials. There are many paragons in which biological models or elements from nature have been biomimetically adapted in various areas in order to resolve technical problems, such as the silent flight of the owl, the lotus effect, or the sticky feet of the gecko. One special example shows us how nanofibers might be handled in the future: cribellate spiders possess a specialized comb, the calamistrum, on their hindmost legs, which is used to process and assemble nanofibers into structurally complex capture threads. Within this study, we were able to prove that these fibers do not stick to the calamistrum because of a special fingerprint-like nanostructure on the comb. This structure prevents the nanofibers from smoothly adapting to the surface of the comb, thus minimizing contact and reducing the adhesive van der Waals forces between the nanofibers and surface. This leads to the spiders’ ability of nonsticky processing of nanofibers for their capture threads. The successful transfer of these structures to a technical surface proved that this biological model can be adapted to optimize future tools in technical areas in which antiadhesive handling of nanofibrous materials is required.
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Rechteinformation CC BY-NC-ND 4.0 ; Creative Commons Attribution NonCommercial NoDerivatives 4.0 License

Zitierung

Joel, A. C., Meyer, M., Heitz, J., Heiss, A., Park, D., Adamova, H., & Baumgartner, W. (2020). Biomimetic combs as antiadhesive tools to manipulate nanofibers. ACS Applied Nano Materials, 3(4), 3395–3401. https://doi.org/10.1021/acsanm.0c00130

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