Dynamic materials that can sense changes in their surroundings and functionally respond by altering many of their physical characteristics are primed to be integral components of future “smart” technologies. A fundamental reason for the adaptability of biological organisms is their innate ability to convert environmental or chemical cues into mechanical motion and reconfiguration on both the molecular and macroscale. However, design and engineering of robust chemomechanical behavior in artificial materials has proven a challenge. Such systems can be quite complex and often require intricate coordination between both chemical and mechanical inputs and outputs, as well as the combination of multiple materials working cooperatively to achieve ...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Responsive materials capable of autonomously regulating and adapting to molecular recognition-induce...
abstract: Stimuli-responsive polymers or so-called “smart polymers” are macromolecules that are sens...
D ynamic materials that can sense changes in their surroundings and functionally respond by altering...
A living organism is a bundle of dynamic, integrated adaptive processes: not only does it continuous...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Ample evidence has demonstrated that biological cells not only react to biochemical cues from the su...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
Hydrogels are a promising type of soft material featuring great similarity to biological tissues due...
Living organisms have unique homeostatic abilities, maintaining tight control of their local environ...
Interactive materials are at the forefront of current materials research with few examples in the li...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
ca. 200 words; this text will present the book in all promotional forms (e.g. flyers). Please descri...
Nature demonstrates the efficiency of hierarchically integrated components that work in cooperation ...
The ability to program soft materials to undergo observable shape transformations in response to env...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Responsive materials capable of autonomously regulating and adapting to molecular recognition-induce...
abstract: Stimuli-responsive polymers or so-called “smart polymers” are macromolecules that are sens...
D ynamic materials that can sense changes in their surroundings and functionally respond by altering...
A living organism is a bundle of dynamic, integrated adaptive processes: not only does it continuous...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Ample evidence has demonstrated that biological cells not only react to biochemical cues from the su...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
Hydrogels are a promising type of soft material featuring great similarity to biological tissues due...
Living organisms have unique homeostatic abilities, maintaining tight control of their local environ...
Interactive materials are at the forefront of current materials research with few examples in the li...
The continuing interest in stimuli-responsive materials has yielded quite an expansive variety of sm...
ca. 200 words; this text will present the book in all promotional forms (e.g. flyers). Please descri...
Nature demonstrates the efficiency of hierarchically integrated components that work in cooperation ...
The ability to program soft materials to undergo observable shape transformations in response to env...
Stimuli-responsive hydrogels undergo large shape change in response to a wide variety of stimuli, su...
Responsive materials capable of autonomously regulating and adapting to molecular recognition-induce...
abstract: Stimuli-responsive polymers or so-called “smart polymers” are macromolecules that are sens...