In this work we report the application of two and three-beam single pulse laser interference lithography to thin polymer films of poly(trimethylene terephthalate) (PTT). By irradiating the sample surface with temporary and spatially overlapped single pulses from two or three coherent beams and changing the angles of incidence, we have accomplished the fabrication of large-area polymer micro and submicrogratings as well as submicrometric cavities arranged in a hexagonal lattice. The characterization of the structures in real space by atomic force microscopy (AFM) and scanning electron microscopy (SEM) has allowed us to determine the formation mechanism of the microgratings to be based on different ablation regimes depending on the local flue...
A simple optical interference method for the fabrication of simply periodic and periodic with a subs...
This work presents twomask-less photolithographic methods to fabricate polymer structures with micro...
Picosecond pulsed laser (10.4 ps, 1064 nm, 5 and 50 kHz) patterning studies were performed, of PEDOT...
In this work we report the application of two and three-beam single pulse laser interference lithogr...
In this work we report the application of two and three-beam single pulse laser interference lithogr...
ABSTRACT: In this work we report the application of two and three-beam single pulse laser interferen...
In the present work, we report on the application of optical near fields to nanostructuring of poly(...
An ultrafast, parallel, and beyond-the-master micropatterning technique for ultrathin (30−400 nm) no...
It is attractive to produce true three-dimensional (3D) microstructures both rapidly and economicall...
Surface pattering engineering techniques are essential to fabricate advanced topographies that can b...
Laser-based methods have demonstrated to be effective in the fabrication of surface micro- and nanos...
Here we present a precise morphological description of laser-induced periodic surface structures (LI...
Fabrication and characteristics of two-dimensional (2D) and three-dimensional (3D) periodic structur...
Here we present a precise morphological description of laser-induced periodic surface structures (LI...
A two-beam laser interference technique is used for exposure of photoresist in combination with an e...
A simple optical interference method for the fabrication of simply periodic and periodic with a subs...
This work presents twomask-less photolithographic methods to fabricate polymer structures with micro...
Picosecond pulsed laser (10.4 ps, 1064 nm, 5 and 50 kHz) patterning studies were performed, of PEDOT...
In this work we report the application of two and three-beam single pulse laser interference lithogr...
In this work we report the application of two and three-beam single pulse laser interference lithogr...
ABSTRACT: In this work we report the application of two and three-beam single pulse laser interferen...
In the present work, we report on the application of optical near fields to nanostructuring of poly(...
An ultrafast, parallel, and beyond-the-master micropatterning technique for ultrathin (30−400 nm) no...
It is attractive to produce true three-dimensional (3D) microstructures both rapidly and economicall...
Surface pattering engineering techniques are essential to fabricate advanced topographies that can b...
Laser-based methods have demonstrated to be effective in the fabrication of surface micro- and nanos...
Here we present a precise morphological description of laser-induced periodic surface structures (LI...
Fabrication and characteristics of two-dimensional (2D) and three-dimensional (3D) periodic structur...
Here we present a precise morphological description of laser-induced periodic surface structures (LI...
A two-beam laser interference technique is used for exposure of photoresist in combination with an e...
A simple optical interference method for the fabrication of simply periodic and periodic with a subs...
This work presents twomask-less photolithographic methods to fabricate polymer structures with micro...
Picosecond pulsed laser (10.4 ps, 1064 nm, 5 and 50 kHz) patterning studies were performed, of PEDOT...