We implemented and developed a number of different mechanical patterning methods, including soft hot embossing, rapid prototyping, sub-µm fluidics, high-temperature and room-temperature nanoimprinting lithography, to fabricate planar periodic structures based on organic materials. Patterns were faithfully transferred to many different organic compounds, including polymers, low-molar-mass compounds, and blends, up to 100-nm scale resolution. Lithography does not reduce the emission yields of light-emitting organic compounds, thus opening the way to the one-step realization of organic-based confined optoelectronic devices. We carefully investigated the possible changes in the optical properties (absorbance, luminescence, and quantum yi...
During the last two decades, nano-materials have been intensively investigated due to their wide ran...
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 implemented and developed a number of different mechanical patterning methods, including soft hot...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
We employed nanoimprint lithography and soft moulding techniques to print one-dimensional nanostruct...
We demonstrate the multilevel patterning of organic light-emitting polymers by room-temperature nano...
Organic-based photonics and molecular electronics are attracting an increasing interest in modern sc...
The use of organic compounds as active materials in electronic and optoelectronic devices opens the ...
Organic materials are of great interest for the development of low cost electronic and optoelectroni...
A single-monolayered hexagonal self-assembled photonic crystal (PC) pattern fabricated onto polyethy...
This is the final report of a one-year, Laboratory-Directed Research and Development (LDRD) project ...
We report on the nanopatterning of conjugated polymers by soft molding, and exploit the glass trans...
The realization of organic electronic technologies requires the availability of patterning technique...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
During the last two decades, nano-materials have been intensively investigated due to their wide ran...
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 implemented and developed a number of different mechanical patterning methods, including soft hot...
We employed mechanical patterning methods, including soft hot embossing and nanoimprinting lithograp...
We employed nanoimprint lithography and soft moulding techniques to print one-dimensional nanostruct...
We demonstrate the multilevel patterning of organic light-emitting polymers by room-temperature nano...
Organic-based photonics and molecular electronics are attracting an increasing interest in modern sc...
The use of organic compounds as active materials in electronic and optoelectronic devices opens the ...
Organic materials are of great interest for the development of low cost electronic and optoelectroni...
A single-monolayered hexagonal self-assembled photonic crystal (PC) pattern fabricated onto polyethy...
This is the final report of a one-year, Laboratory-Directed Research and Development (LDRD) project ...
We report on the nanopatterning of conjugated polymers by soft molding, and exploit the glass trans...
The realization of organic electronic technologies requires the availability of patterning technique...
This communications reports about a novel synthetic methodology that permits a tailored deposition o...
During the last two decades, nano-materials have been intensively investigated due to their wide ran...
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...