Direct plasma etching is a powerful method for producing antireflective nanostructures on optical polymers, such as cycloolefin polymers. The approved process requires the deposition of a very thin initial layer followed by etching. The structure depth achievable in this way is limited to approximately 100 nm. Due to this limitation, the reflectance performance of materials produced by plasma etching is sufficient in the visible spectral range for normal light incidence on planar substrates only. By depositing and etching an additional organic layer on top of the structure, its antireflective performance can be significantly broadened. This type of double structure is adequate for light incidence angles of up to 60° on planar and curved sub...
Poly (ethylene terephthalate) (PET) substrate is a widely used polymer in the optoelectronics indust...
Subwavelength nanostructure arrays on surfaces improve their optical transmittance by reducing the r...
Plasma-etched nanostructures are useful to provide antireflective properties to glass and plastic su...
Self-organized nanostructures that provide antireflection properties grow on PMMA caused by plasma i...
A new technology based on plasma etching has been developed to produce antireflective surface struct...
The processing of organic substances by vacuum deposition is opening new possibilities for the prope...
The plasma etching process was originally developed to produce antireflective (AR) nanostructures on...
Antireflective structures with features of sub-wavelength size are appropriate as an alternative to ...
The application of plasma treatment on transparent PMMA substrates has shown an effect of reducing s...
[[abstract]]In this paper, we present a low cost approach to produce large-area polymer sheets with ...
Organic layers can be used to realize special functions in optical interference coatings. Suitable c...
The application of nanostructures for optical surfaces has been discussed since antireflective nanos...
Plasma treatments are capable to generate antireflective surface structures on various polymers. On ...
Subwavelength nanostructure arrays on surfaces improve their optical transmittance by reducing the r...
Source: US2014374377A [EN] A method for producing an antireflection coating on a substrate is specif...
Poly (ethylene terephthalate) (PET) substrate is a widely used polymer in the optoelectronics indust...
Subwavelength nanostructure arrays on surfaces improve their optical transmittance by reducing the r...
Plasma-etched nanostructures are useful to provide antireflective properties to glass and plastic su...
Self-organized nanostructures that provide antireflection properties grow on PMMA caused by plasma i...
A new technology based on plasma etching has been developed to produce antireflective surface struct...
The processing of organic substances by vacuum deposition is opening new possibilities for the prope...
The plasma etching process was originally developed to produce antireflective (AR) nanostructures on...
Antireflective structures with features of sub-wavelength size are appropriate as an alternative to ...
The application of plasma treatment on transparent PMMA substrates has shown an effect of reducing s...
[[abstract]]In this paper, we present a low cost approach to produce large-area polymer sheets with ...
Organic layers can be used to realize special functions in optical interference coatings. Suitable c...
The application of nanostructures for optical surfaces has been discussed since antireflective nanos...
Plasma treatments are capable to generate antireflective surface structures on various polymers. On ...
Subwavelength nanostructure arrays on surfaces improve their optical transmittance by reducing the r...
Source: US2014374377A [EN] A method for producing an antireflection coating on a substrate is specif...
Poly (ethylene terephthalate) (PET) substrate is a widely used polymer in the optoelectronics indust...
Subwavelength nanostructure arrays on surfaces improve their optical transmittance by reducing the r...
Plasma-etched nanostructures are useful to provide antireflective properties to glass and plastic su...