A permeability- and surface-energy-controllable polyurethane acrylate (PUA) mold, a capillary-force material (CFM) mold, is introduced for capillary-force lithography (CFL). In CFL, the surface energy and gas permeability of the mold are crucial. However, the modulation of these two main factors at a time is difficult. Here, we introduce new CFM molds in which the surface energy and permeability can be modified by controlling the degree of cross-linking of the CFM. As the degree of cross-linking of the CFM mold increases, the surface energy and air permeability decrease. The high average functionality of the mold material makes it possible to produce patterns relatively finely and rapidly due to the high rate of capillary rise and stiffness...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
A permeability- and surface-energy-controllable polyurethane acrylate (PUA) mold, a “capillary-force...
A new ultraviolet (UV) curable mold consisting of fanctionalized polyurethane with acrylate group (M...
Capillary force lithography (CFL) with impermeable mold is presented. For the CFL to be operative ov...
We present pressure-assisted capillary force lithography (CFL) to generate self-modulating polymer r...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
A simple kinetic model is presented to describe the capillary rise of a thin polymer film into a les...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
The influence of processing conditions and polymer architecture on pattern transfer in capillary for...
Monolithic bridge structures were fabricated by using capillary-force lithography (CFL), which was d...
The implementation of high-resolution polymer templates fabricated by capillary force lithography (C...
A two-step UV-assisted capillary molding technique for fabricating monolithic micro-nanoscale polyme...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
A permeability- and surface-energy-controllable polyurethane acrylate (PUA) mold, a “capillary-force...
A new ultraviolet (UV) curable mold consisting of fanctionalized polyurethane with acrylate group (M...
Capillary force lithography (CFL) with impermeable mold is presented. For the CFL to be operative ov...
We present pressure-assisted capillary force lithography (CFL) to generate self-modulating polymer r...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
A simple kinetic model is presented to describe the capillary rise of a thin polymer film into a les...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
The influence of processing conditions and polymer architecture on pattern transfer in capillary for...
Monolithic bridge structures were fabricated by using capillary-force lithography (CFL), which was d...
The implementation of high-resolution polymer templates fabricated by capillary force lithography (C...
A two-step UV-assisted capillary molding technique for fabricating monolithic micro-nanoscale polyme...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...