Micro- and nanopatterns perform unique functions and have attracted attention in various industrial fields, such as electronic devices, microfluidics, biotechnology, optics, sensors, and smart and anti-adhesion surfaces. To put fine-patterned products to practical use, low-cost patterning technology is necessary. Nanoimprint lithography (NIL) is a promising technique for high-throughput nanopattern fabrication. In particular, thermal nanoimprint lithography (T-NIL) has the advantage of employing flexible materials and eliminating chemicals and solvents. Moreover, T-NIL is particularly suitable for compostable and recyclable materials, especially when applying biobased materials for use in optics and electronics. These attributes make T-NIL ...
Nanoimprint lithography (NIL) is an emerging nanofabrication tool, able to replicate imprint pattern...
Metasurfaces are composed of periodic sub-wavelength nanostructures and exhibit optical properties t...
A strong need exists for effective nanopatterning technique to fabricate the next generation devices...
Micro- and nanopatterns perform unique functions and have attracted attention in various industrial ...
Thermal nanoimprint lithography (T-NIL), in which thermoplastics are used as transfer substrates, is...
Thermal nanoimprint lithography (T-NIL), in which thermoplastics are used as transfer substrates, is...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
The nanoimprint lithography (NIL) process with its key elements molding and thin film pattern transf...
Because of its unique principle based on mechanical deformation, nanoimprint lithography (NIL) has b...
Nanoimprint lithography (NIL) is a nonconventional lithographic technique for high-throughput patter...
Advanced nanooptics in the areas of flat lenses, diffractive elements, and tunable emissivity requir...
Nanoimprint lithography (NIL) is more than a planar high-end technology for the patterning of wafer-...
Nanoimprint lithography (NIL) is an emerging nanofabrication tool, able to replicate imprint pattern...
Metasurfaces are composed of periodic sub-wavelength nanostructures and exhibit optical properties t...
A strong need exists for effective nanopatterning technique to fabricate the next generation devices...
Micro- and nanopatterns perform unique functions and have attracted attention in various industrial ...
Thermal nanoimprint lithography (T-NIL), in which thermoplastics are used as transfer substrates, is...
Thermal nanoimprint lithography (T-NIL), in which thermoplastics are used as transfer substrates, is...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
Background: Nanoimprinting lithography technique uses a very simple concept of transferring pattern ...
The nanoimprint lithography (NIL) process with its key elements molding and thin film pattern transf...
Because of its unique principle based on mechanical deformation, nanoimprint lithography (NIL) has b...
Nanoimprint lithography (NIL) is a nonconventional lithographic technique for high-throughput patter...
Advanced nanooptics in the areas of flat lenses, diffractive elements, and tunable emissivity requir...
Nanoimprint lithography (NIL) is more than a planar high-end technology for the patterning of wafer-...
Nanoimprint lithography (NIL) is an emerging nanofabrication tool, able to replicate imprint pattern...
Metasurfaces are composed of periodic sub-wavelength nanostructures and exhibit optical properties t...
A strong need exists for effective nanopatterning technique to fabricate the next generation devices...