Stimuli-responsive liquid crystal elastomers with molecular orientation coupled to rubber-like elasticity show a great potential as elements in soft robotics, sensing, and transport systems. The orientational order defines their mechanical response to external stimuli, such as thermally activated muscle-like contraction. Here we demonstrate a dynamic thermal control of the surface topography of an elastomer prepared as a coating with a pattern of in-plane molecular orientation. The inscribed pattern determines whether the coating develops elevations, depressions, or in-plane deformations when the temperature changes. The deterministic dependence of the out-of-plane dynamic profile on the in-plane orientation is explained by activation force...
Liquid crystal polymer networks (LCNs) lead the research geared toward macroscopic motion of materia...
Liquid crystalline elastomers (LCEs) are lightly crosslinked polymers that combine liquid crystallin...
Future robotic systems will have to adapt their operation to dynamic environments and therefore thei...
Stimuli-responsive liquid crystal elastomers with molecular orientation coupled to rubber-like elast...
In analogy with developments in soft robotics it is anticipated that soft robotic functions at surfa...
We prepare a liquid crystal elastomer (LCE) with a spatially patterned liquid crystal director field...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
An approach is proposed to create robust liquid crystalline polymer coatings that exhibit sensitivit...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Liquid crystalline elastomers (LCEs) exhibit some remarkable physical properties, such as the revers...
The large, directional stimuli-response of aligned liquid crystalline elastomers (LCEs) could enable...
https://kent-islandora.s3.us-east-2.amazonaws.com/node/14393/83905-thumbnail.jpgA liquid crystal ela...
The fabrication of stimulus-responsive coatings that change both reflectivity and topography is hamp...
Liquid crystal polymer networks (LCNs) lead the research geared toward macroscopic motion of materia...
Liquid crystalline elastomers (LCEs) are lightly crosslinked polymers that combine liquid crystallin...
Future robotic systems will have to adapt their operation to dynamic environments and therefore thei...
Stimuli-responsive liquid crystal elastomers with molecular orientation coupled to rubber-like elast...
In analogy with developments in soft robotics it is anticipated that soft robotic functions at surfa...
We prepare a liquid crystal elastomer (LCE) with a spatially patterned liquid crystal director field...
Switchable materials in response to external stimuli serve as building blocks to construct microscal...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
An approach is proposed to create robust liquid crystalline polymer coatings that exhibit sensitivit...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Liquid crystalline elastomers (LCEs) exhibit some remarkable physical properties, such as the revers...
The large, directional stimuli-response of aligned liquid crystalline elastomers (LCEs) could enable...
https://kent-islandora.s3.us-east-2.amazonaws.com/node/14393/83905-thumbnail.jpgA liquid crystal ela...
The fabrication of stimulus-responsive coatings that change both reflectivity and topography is hamp...
Liquid crystal polymer networks (LCNs) lead the research geared toward macroscopic motion of materia...
Liquid crystalline elastomers (LCEs) are lightly crosslinked polymers that combine liquid crystallin...
Future robotic systems will have to adapt their operation to dynamic environments and therefore thei...