• English
  • Deutsch
  • Log In
    Password Login
    Research Outputs
    Fundings & Projects
    Researchers
    Institutes
    Statistics
Repository logo
Fraunhofer-Gesellschaft
  1. Home
  2. Fraunhofer-Gesellschaft
  3. Artikel
  4. Biomimetic surface structuring using laser based interferometric methods
 
  • Details
  • Full
Options
2018
Journal Article
Title

Biomimetic surface structuring using laser based interferometric methods

Abstract
This review investigates the capabilities of laser-based interferometric methods for producing structures with multiple-scaled surface features imitating natural examples. Firstly, laser interference lithography is used to produce hierarchical patterns with length-scales in the micrometer and sub-micrometer range. Different strategies are discussed to produce a wide variety of periodic arrays, depending on the number of resist lasers used as well as the way in which the exposure steps are organized. After that, periodic patterns are fabricated on polymers using ns laser pulses from an UV-laser system. Additionally in this case, multiple-scale patterns are produced by using different strategies. A similar approach is described to treat metallic surfaces of steel X6Cr17 and a titanium alloy Ti6Al4V. The geometry of the produced microstructures was characterized using scanning electron microscopy and confocal microscopy. Measurement of water contact angle is performed for both polymer and metallic surfaces.
Author(s)
Lasagni, Andrés-Fabián  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Alamri, Sabri
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Aguilar-Morales, Alfredo I.
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Rößler, Florian
TU Dresden
Voisiat, Bogdan
TU Dresden
Kunze, Tim
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Journal
Applied Sciences  
Open Access
DOI
10.3390/app8081260
Additional link
Full text
Language
English
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Keyword(s)
  • biomimetic structure

  • direct laser interference patterning

  • Hierarchical micro-structures

  • surface functionalization

  • wettability

  • Cookie settings
  • Imprint
  • Privacy policy
  • Api
  • Contact
© 2024