Films of four different nanostructures, namely micelles, filled cylinders, ring-shaped porous nanostructures and hollow cylinders, can be prepared easily in a straightforward and simple way by spin coating onto a silicon plate toluene solutions of poly(styrene-block-4-vinylpyridine) copolymer containing formic acid of increasing concentration. Despite the enormous progress in preparation of porous polymers, most of them require multiple steps. In this sense, this method represents an effort to obtain not only porous thin films but also other bidimensional nanostructures in a very simple way. © 2017 Society of Chemical Industry.This work was supported by Spanish MINECO (FIS2013‐45469 and FIS2016‐76058 (AEI/FEDER,EU)).Peer Reviewe
In this study, we blended two readily available polymers, polydimethylsiloxane (PDMS), a semi-crysta...
This paper reports a simple, additive process to generate patterned polymer films without using any ...
Molecularly imprinted polymers (MIPs) are synthetic materials that mimic the behavior of natural ant...
A novel approach enabling the full control of the 3D nanostructure of polymer thin films is presente...
Nanoporous polymer films have been prepared using immiscible blends of polyetherimide (PEI) and poly...
We demonstrate a simple route for preparing various micellar nanostructures, like spheres, cylinders...
A new, robust technique for preparing highly selective molecularly imprinted films (see Figure) is p...
It is well-known that block copolymer thin films can be easily prepared on different substrates by s...
Controlling the orientation and lateral ordering of the block copolymer microdomains is essential to...
Controlling the orientation and lateral ordering of the block copolymer microdomains is essential to...
Porous materials are powerful functional devices that can find applications in many fields, from nan...
Spin coating is widely used in the preparation of thin films as it yields reproducible results with ...
Nanoporous thin polymer films have been produced by a simple two-step approach using metallo-supramo...
Block copolymers offer the fabrication of mesoporous thin films with distinct nanoscale structural f...
International audienceThe preparation of well-arranged nano-porous thin films from an ABA triblock c...
In this study, we blended two readily available polymers, polydimethylsiloxane (PDMS), a semi-crysta...
This paper reports a simple, additive process to generate patterned polymer films without using any ...
Molecularly imprinted polymers (MIPs) are synthetic materials that mimic the behavior of natural ant...
A novel approach enabling the full control of the 3D nanostructure of polymer thin films is presente...
Nanoporous polymer films have been prepared using immiscible blends of polyetherimide (PEI) and poly...
We demonstrate a simple route for preparing various micellar nanostructures, like spheres, cylinders...
A new, robust technique for preparing highly selective molecularly imprinted films (see Figure) is p...
It is well-known that block copolymer thin films can be easily prepared on different substrates by s...
Controlling the orientation and lateral ordering of the block copolymer microdomains is essential to...
Controlling the orientation and lateral ordering of the block copolymer microdomains is essential to...
Porous materials are powerful functional devices that can find applications in many fields, from nan...
Spin coating is widely used in the preparation of thin films as it yields reproducible results with ...
Nanoporous thin polymer films have been produced by a simple two-step approach using metallo-supramo...
Block copolymers offer the fabrication of mesoporous thin films with distinct nanoscale structural f...
International audienceThe preparation of well-arranged nano-porous thin films from an ABA triblock c...
In this study, we blended two readily available polymers, polydimethylsiloxane (PDMS), a semi-crysta...
This paper reports a simple, additive process to generate patterned polymer films without using any ...
Molecularly imprinted polymers (MIPs) are synthetic materials that mimic the behavior of natural ant...