We employed nanoimprint lithography and soft moulding techniques to print one-dimensional nanostructures with submicron periodicity onto organic films made of different light-emitting materials. We studied and compared the emission and absorption of the chromophores before and after the lithography processes, demonstrating that the lithography techniques actually preserve the optical properties of light-emitting molecules. In particular, we investigated the photoluminescence efficiency, finding that all our patterned light-emitting materials show enhanced luminescence emission (up to a factor larger than two) with respect to the untextured film, as a consequence of the printed nanostructure. This is ascribed to the decrease of the self-abs...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
This contribution presents a method for producing nanoscale color pixels for high-resolution display...
We implemented and developed a number of different mechanical patterning methods, including soft hot...
We demonstrate the multilevel patterning of organic light-emitting polymers by room-temperature nano...
Organic materials have revolutionized optoelectronics by their processability, flexibility and low c...
A grating resolution of up to 200 nm is achieved using room-temperature nanoimprint lithography on s...
A grating resolution of up to 200 nm is achieved using room-temperature nanoimprint lithography on s...
A grating resolution of up to 200 nm is achieved using room-temperature nanoimprint lithography on s...
We report on the nanopatterning of conjugated polymers by soft molding, and exploit the glass trans...
In this chapter we review the use of nanoimprint lithography and its derivative soft-lithography tec...
Organic materials have revolutionized optoelectronics by their processability, flexibility and low ...
Organic chromophores that exhibit aggregation-induced emission (AIE) are of interest for application...
In order to produce nanophotonic elements for smart packaging, we investigated the influence of the ...
Thin films made of organic semiconductors (-sexithiophene, PDAS and PBAS) have been printed and the ...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
This contribution presents a method for producing nanoscale color pixels for high-resolution display...
We implemented and developed a number of different mechanical patterning methods, including soft hot...
We demonstrate the multilevel patterning of organic light-emitting polymers by room-temperature nano...
Organic materials have revolutionized optoelectronics by their processability, flexibility and low c...
A grating resolution of up to 200 nm is achieved using room-temperature nanoimprint lithography on s...
A grating resolution of up to 200 nm is achieved using room-temperature nanoimprint lithography on s...
A grating resolution of up to 200 nm is achieved using room-temperature nanoimprint lithography on s...
We report on the nanopatterning of conjugated polymers by soft molding, and exploit the glass trans...
In this chapter we review the use of nanoimprint lithography and its derivative soft-lithography tec...
Organic materials have revolutionized optoelectronics by their processability, flexibility and low ...
Organic chromophores that exhibit aggregation-induced emission (AIE) are of interest for application...
In order to produce nanophotonic elements for smart packaging, we investigated the influence of the ...
Thin films made of organic semiconductors (-sexithiophene, PDAS and PBAS) have been printed and the ...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
This contribution presents a method for producing nanoscale color pixels for high-resolution display...