Surface functionalization by topographic micro- and nano-structures in order to achieve unique properties, like super-hydrophobicity or ultrahigh light absorption, is a common strategy in nature. In this paper, direct laser interference patterning (DLIP) is presented as a promising tool allowing for the generation of such surface patterns on technical surfaces in order to mimic these biological surfaces and effects. Friction optimization and antibacterial effects by DLIP are exemplarily described. Topographic surface patterns on the micro- and nano-scale demonstrated a significant reduction in the coefficient of friction and bacterial adhesion. It was shown that in both cases, the control of the contact area between surfaces or between surf...
Inspired by nature, a number of techniques have been developed to fabricate the bionic structures of...
Also published in Journal of Laser Applications (2017). eISSN - 1938-1387.Bacteria have evolved to b...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Surface functionalization by topographic micro- and nano-structures in order to achieve unique prope...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Modification of the biomaterial surface topograph...
In the past 15 years, many efforts were made to create functionalized artificial surfaces showing sp...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Micro–nano patterns created directly over solid surfaces to combat microbial activity help in preven...
In this work, in order to broaden our understanding of the wetting properties of technical surfaces,...
47 pags., 48 figs., 4 tabs.The exciting properties of micro- and nano-patterned surfaces found in na...
Laser surface structuring has long proven to be a suitable tool to produce surfaces that repel both ...
A wide range of products - from LEDs to solar cells to medical implants - can be improved through th...
In this paper, a feasibility study of manufacturing anti-bacteria surface on stainless steel 7C27Mo2...
Frictional performances of different textures, including axisymmetric and directional patterns, have...
Smart surfaces are a source of innovation in the 21^st Century. Potential applications can be found ...
Inspired by nature, a number of techniques have been developed to fabricate the bionic structures of...
Also published in Journal of Laser Applications (2017). eISSN - 1938-1387.Bacteria have evolved to b...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Surface functionalization by topographic micro- and nano-structures in order to achieve unique prope...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Modification of the biomaterial surface topograph...
In the past 15 years, many efforts were made to create functionalized artificial surfaces showing sp...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Micro–nano patterns created directly over solid surfaces to combat microbial activity help in preven...
In this work, in order to broaden our understanding of the wetting properties of technical surfaces,...
47 pags., 48 figs., 4 tabs.The exciting properties of micro- and nano-patterned surfaces found in na...
Laser surface structuring has long proven to be a suitable tool to produce surfaces that repel both ...
A wide range of products - from LEDs to solar cells to medical implants - can be improved through th...
In this paper, a feasibility study of manufacturing anti-bacteria surface on stainless steel 7C27Mo2...
Frictional performances of different textures, including axisymmetric and directional patterns, have...
Smart surfaces are a source of innovation in the 21^st Century. Potential applications can be found ...
Inspired by nature, a number of techniques have been developed to fabricate the bionic structures of...
Also published in Journal of Laser Applications (2017). eISSN - 1938-1387.Bacteria have evolved to b...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...