Evaporative self-assembly of semiconducting polymers is a low-cost route to fabricating micrometer and nanoscale features for use in organic and flexible electronic devices. However, in most cases, rate is limited by the kinetics of solvent evaporation, and it is challenging to achieve uniformity over length- and time-scales that are compelling for manufacturing scale-up. In this study, we report high-throughput, continuous printing of poly(3-hexylthiophene) (P3HT) by a modified doctor blading technique with oscillatory meniscus motion-meniscus-oscillated self-assembly (MOSA), which forms P3HT features similar to 100 times faster than previously reported techniques. The meniscus is pinned to a roller, and the oscillatory meniscus motion of ...
A strategy is reported to control the morphologies of inkjet-printed small organic molecule semicond...
Self-assembly methods allow to obtain ordered patterns on surfaces with exquisite precision, but oft...
Self-assembly of nanoscale materials to form intriguing structures has garnered considerable attenti...
© Evaporative self-assembly of semiconducting polymers is a low-cost route to fabricating micromete...
The ability to pattern semiconducting conjugated polymers (CPs) and concurrently enable their highly...
The electronic devices that play a vital role in our daily life are primarily based on silicon and a...
Exploiting a femtoliter liquid meniscus formed on a nanopipet is a powerful approach to spatially co...
Self-assembly of block-copolymers provides a route to the fabrication of small (size, <50 nm) and de...
The continual demand for modern optoelectronics with a high integration degree and customized functi...
Polymer microstructures are widely used in optics, flexible electronics, and so forth. We demonstrat...
Directed Self-Assembly (DSA) is a promising strategy for quickly and cheaply manufacturing nanoscale...
Fundamental understanding of the self-assembly of domains in block copolymers (BCPs) and capabilitie...
Starting from first-time demonstration of controlled assembly of Poly(3-hexylthiophene) (P3HT), a mo...
Electronics based on solution-processable materials are promising for applications in many fields wh...
International audienceWe report for the first time the use of a microfluidic supercritical antisolve...
A strategy is reported to control the morphologies of inkjet-printed small organic molecule semicond...
Self-assembly methods allow to obtain ordered patterns on surfaces with exquisite precision, but oft...
Self-assembly of nanoscale materials to form intriguing structures has garnered considerable attenti...
© Evaporative self-assembly of semiconducting polymers is a low-cost route to fabricating micromete...
The ability to pattern semiconducting conjugated polymers (CPs) and concurrently enable their highly...
The electronic devices that play a vital role in our daily life are primarily based on silicon and a...
Exploiting a femtoliter liquid meniscus formed on a nanopipet is a powerful approach to spatially co...
Self-assembly of block-copolymers provides a route to the fabrication of small (size, <50 nm) and de...
The continual demand for modern optoelectronics with a high integration degree and customized functi...
Polymer microstructures are widely used in optics, flexible electronics, and so forth. We demonstrat...
Directed Self-Assembly (DSA) is a promising strategy for quickly and cheaply manufacturing nanoscale...
Fundamental understanding of the self-assembly of domains in block copolymers (BCPs) and capabilitie...
Starting from first-time demonstration of controlled assembly of Poly(3-hexylthiophene) (P3HT), a mo...
Electronics based on solution-processable materials are promising for applications in many fields wh...
International audienceWe report for the first time the use of a microfluidic supercritical antisolve...
A strategy is reported to control the morphologies of inkjet-printed small organic molecule semicond...
Self-assembly methods allow to obtain ordered patterns on surfaces with exquisite precision, but oft...
Self-assembly of nanoscale materials to form intriguing structures has garnered considerable attenti...