We present the assembly of asymmetric two-layer hybrid DNA-based hydrogels revealing stimuli-triggered reversibly modulated shape transitions. Asymmetric, linear hydrogels that include layer-selective switchable stimuli-responsive elements that control the hydrogel stiffness are designed. Trigger-induced stress in one of the layers results in the bending of the linear hybrid structure, thereby minimizing the elastic free energy of the systems. The removal of the stress by a counter-trigger restores the original linear bilayer hydrogel. The stiffness of the DNA hydrogel layers is controlled by thermal, pH (i-motif), K<sup>+</sup> ion/crown ether (G-quadruplexes), chemical (pH-doped polyaniline), or biocatalytic (glucose oxidase/urease) trigg...
The ability to program soft materials to undergo observable shape transformations in response to env...
Complex mechanical changes in response to an external trigger are pervasive in natural soft material...
Hydrogels are water-containing soft materials made of cross-linked polymer networks. Hydrogels can e...
Contains fulltext : 178194.pdf (publisher's version ) (Open Access)One of the most...
One of the most intriguing and important aspects of biological supramolecular materials is its abili...
Biological materials have evolved to combine a number of functionally relevant properties. They are ...
Biological materials have evolved to combine a number of functionally relevant properties. They are ...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
In this work, an engineered hydrogel system with a 2D and 3D tunable cross-linking degree is present...
Biomacromolecules usually form complex superstructures in natural biotissues, such as different alig...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
Materials found in nature frequently show an ability to change their shape or external morphology un...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
The ability to program soft materials to undergo observable shape transformations in response to env...
Complex mechanical changes in response to an external trigger are pervasive in natural soft material...
Hydrogels are water-containing soft materials made of cross-linked polymer networks. Hydrogels can e...
Contains fulltext : 178194.pdf (publisher's version ) (Open Access)One of the most...
One of the most intriguing and important aspects of biological supramolecular materials is its abili...
Biological materials have evolved to combine a number of functionally relevant properties. They are ...
Biological materials have evolved to combine a number of functionally relevant properties. They are ...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Although common in biology, controlled stiffening of hydrogels in vitro is difficult to achieve; the...
In this work, an engineered hydrogel system with a 2D and 3D tunable cross-linking degree is present...
Biomacromolecules usually form complex superstructures in natural biotissues, such as different alig...
Inspired by shape-morphing organisms in nature, researchers have developed various hydrogels with st...
A hydrogel is a crosslinked network of polymer chains swollen by water. When immersed in an aqueous ...
Materials found in nature frequently show an ability to change their shape or external morphology un...
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most ...
The ability to program soft materials to undergo observable shape transformations in response to env...
Complex mechanical changes in response to an external trigger are pervasive in natural soft material...
Hydrogels are water-containing soft materials made of cross-linked polymer networks. Hydrogels can e...