Switchable surface structures based on hydrogels are an emerging field in material science, microfluidics, soft robotics and anti-fouling. Here, we describe a novel method that uses a photo-cross-linkable terpolymer to create a hydrogel coating with a switchable surface structure. The terpolymer is based on poly(N-isopropylacrylamide) (PNIPAm) and it is shown that simple coating technologies like slit die coating can be used under ambient conditions. It is also shown that the swelling ratio of the coating is controlled by the energy dose of ultraviolet (UV) light. Simple and complex surface structures were created using respectively single or multiple UV illumination steps through masks and it is shown that the hydrogel coatings can be reve...
Biomimicry means literally ‘imitation of life’ and is providing sustainable solutions for challenges...
Smart wrinkled hydrogel patterns with modulated chemical composition and wrinkle characteristics (am...
Thin films of hydrogels we study are chemical polymer networks covalently grafted on solid substrate...
Switchable surface structures based on hydrogels are an emerging field in material science, microflu...
In this Article, we report on our approaches to creating responsive hydrogel coatings with surfaces ...
Herein, we describe the preparation of patterned photoresponsive hydrogels by using a facile method....
This chapter provides a brief overview of the principles as well as the potential applications of ph...
International audienceA new strategy for the fabrication of micropatterns of surfaceattached hydroge...
In this work, self-protonating spiropyran-based poly(N-isopropylacrylamide) polymer networks are pre...
Self-actuating materials capable of transforming between three-dimensional shapes have applications ...
A novel photodefinable polymer reactive coating formed using chemical vapor deposition polymerizatio...
Summary: Hydrogels are commonly integrated with other materials. In the one-pot synthesis of a hydro...
Environmentally sensitive hydrogels are three-dimensional crosslinked polymer networks capable of un...
Stimuli sensitive polymers and hydrogels respond with large property changes to small physical and c...
Beside pigment absorption and reflection by periodic photonic structures, natural species often use ...
Biomimicry means literally ‘imitation of life’ and is providing sustainable solutions for challenges...
Smart wrinkled hydrogel patterns with modulated chemical composition and wrinkle characteristics (am...
Thin films of hydrogels we study are chemical polymer networks covalently grafted on solid substrate...
Switchable surface structures based on hydrogels are an emerging field in material science, microflu...
In this Article, we report on our approaches to creating responsive hydrogel coatings with surfaces ...
Herein, we describe the preparation of patterned photoresponsive hydrogels by using a facile method....
This chapter provides a brief overview of the principles as well as the potential applications of ph...
International audienceA new strategy for the fabrication of micropatterns of surfaceattached hydroge...
In this work, self-protonating spiropyran-based poly(N-isopropylacrylamide) polymer networks are pre...
Self-actuating materials capable of transforming between three-dimensional shapes have applications ...
A novel photodefinable polymer reactive coating formed using chemical vapor deposition polymerizatio...
Summary: Hydrogels are commonly integrated with other materials. In the one-pot synthesis of a hydro...
Environmentally sensitive hydrogels are three-dimensional crosslinked polymer networks capable of un...
Stimuli sensitive polymers and hydrogels respond with large property changes to small physical and c...
Beside pigment absorption and reflection by periodic photonic structures, natural species often use ...
Biomimicry means literally ‘imitation of life’ and is providing sustainable solutions for challenges...
Smart wrinkled hydrogel patterns with modulated chemical composition and wrinkle characteristics (am...
Thin films of hydrogels we study are chemical polymer networks covalently grafted on solid substrate...