Thin, transparent silver films sandwiched between dielectric layers are a versatile and high performance transparent electrode technology. Using direct laser interference patterning (DLIP), we are able to structure thin metal films by direct ablation in a fast, single step process. To achieve beneficial pattern and ablation properties, different sublayers of MoOx, Au, Al, Cr, or organics below the silver film and different laser power densities and pulse numbers are investigated. The resulting hexagonally periodic array of apertures shows improved transmittance and sheet resistance. For the best parameter set, the silver network contains little superfluous material at the joints and benefits from partial recrystallization, improving the con...
Precise micro-scale patterning of metal thin-films with semiconductor materials is a critical step i...
Using dielectric-constant (epsilon) matching of metal-oxide (MO) with Ag film, highly transparent MO...
This study presents a new and improved approach to the rapid and green fabrication of highly conduct...
The demand of highly efficient transparent electrodes without the use of rare earth materials such a...
In the search for alternative materials to replace indium-tinoxide in transparent electrodes we have...
Transparent electrodes are necessary in optoelectronic devices such as light-emitting diodes, liquid...
A highly transparent conductive film was fabricated using self-assembled silver electrodes with anti...
Large surface roughness, wire-to-wire junction resistance, and poor adhesion strength of percolated ...
AbstractLine- and hexagonal-like periodic textures were fabricated on aluminium zinc oxide (AZO) usi...
In this article, we propose a systematic method of optimizing the properties of transparent conducti...
Ag has the lowest electrical resistivity among all metals, and at the same time, the best optical pr...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Designing flexible and transparent electrodes for high-performance optoelectronic devices remains a ...
We introduce a new concept for transparent electrodes via the self-assembly of a silver nanowire (Ag...
Conductive metal films are patterned into transparent metal nanowire networks by using electrospun f...
Precise micro-scale patterning of metal thin-films with semiconductor materials is a critical step i...
Using dielectric-constant (epsilon) matching of metal-oxide (MO) with Ag film, highly transparent MO...
This study presents a new and improved approach to the rapid and green fabrication of highly conduct...
The demand of highly efficient transparent electrodes without the use of rare earth materials such a...
In the search for alternative materials to replace indium-tinoxide in transparent electrodes we have...
Transparent electrodes are necessary in optoelectronic devices such as light-emitting diodes, liquid...
A highly transparent conductive film was fabricated using self-assembled silver electrodes with anti...
Large surface roughness, wire-to-wire junction resistance, and poor adhesion strength of percolated ...
AbstractLine- and hexagonal-like periodic textures were fabricated on aluminium zinc oxide (AZO) usi...
In this article, we propose a systematic method of optimizing the properties of transparent conducti...
Ag has the lowest electrical resistivity among all metals, and at the same time, the best optical pr...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Designing flexible and transparent electrodes for high-performance optoelectronic devices remains a ...
We introduce a new concept for transparent electrodes via the self-assembly of a silver nanowire (Ag...
Conductive metal films are patterned into transparent metal nanowire networks by using electrospun f...
Precise micro-scale patterning of metal thin-films with semiconductor materials is a critical step i...
Using dielectric-constant (epsilon) matching of metal-oxide (MO) with Ag film, highly transparent MO...
This study presents a new and improved approach to the rapid and green fabrication of highly conduct...