Smart surfaces are a source of innovation in the 21^st Century. Potential applications can be found in a wide range of fields where improved optical, mechanical or biological properties can enhance the functions of products. In the last years, a method called Direct LaserInterference Patterning (DLIP) has demonstrated to be capable of fabricating a wide range of periodic surface patterns even with resolution at the nanometer and sub-micrometer scales. This article describes recent advances of the DLIP method to process 2D and 3D parts. Firstly, the possibility to fabricate periodic arrays on metallic substrates with sub-micrometer resolution is shown. After that, different concepts to process three dimensional parts are shown, including the...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
A wide range of products - from LEDs to solar cells to medical implants - can be improved through th...
Surface texturing with laser beams is a versatile method able to process micrometric features on dif...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Periodic patterned surfaces do not merely provide unique properties, but act as intelligent surfaces...
Periodic patterned surfaces do not only provide unique properties, but act as intelligent surfaces c...
AbstractIn this study, we introduce a recently developed approach for the fabrication of two and thr...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Direct laser interference patterning can be used to fabricate periodic structures directly on polyme...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Direct Laser Interference Patterning is an emerging technology capable to produce micro- and nanostr...
Periodic patterned surfaces can be used to provide unique surface properties in applications, such a...
Surface patterning engineering techniques are essential to fabricate advanced topographies that can ...
Fabrication of two- and three-dimensional (2D and 3D) structures in the micro- and nano-range allows...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
A wide range of products - from LEDs to solar cells to medical implants - can be improved through th...
Surface texturing with laser beams is a versatile method able to process micrometric features on dif...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Periodic patterned surfaces do not merely provide unique properties, but act as intelligent surfaces...
Periodic patterned surfaces do not only provide unique properties, but act as intelligent surfaces c...
AbstractIn this study, we introduce a recently developed approach for the fabrication of two and thr...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Direct laser interference patterning can be used to fabricate periodic structures directly on polyme...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Direct Laser Interference Patterning is an emerging technology capable to produce micro- and nanostr...
Periodic patterned surfaces can be used to provide unique surface properties in applications, such a...
Surface patterning engineering techniques are essential to fabricate advanced topographies that can ...
Fabrication of two- and three-dimensional (2D and 3D) structures in the micro- and nano-range allows...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
A wide range of products - from LEDs to solar cells to medical implants - can be improved through th...
Surface texturing with laser beams is a versatile method able to process micrometric features on dif...