Soft matter elements undergoing programed, reversible shape change can contribute to fundamental advance in areas such as optics, medicine, microfluidics, and robotics. Crosslinked liquid crystalline polymers have demonstrated huge potential to implement soft responsive elements; however, the complexity and size of the actuators are limited by the current dominant thin-film geometry processing toolbox. Using 3D printing, stimuli-responsive liquid crystalline elastomeric structures are created here. The printing process prescribes a reversible shape-morphing behavior, offering a new paradigm for active polymer system preparation. The additive character of this technology also leads to unprecedented geometries, complex functions, and sizes be...
There is a growing interest in the concept of four-dimensional (4D) printing that combines a three-d...
Recent years have seen major advances in the developments of both additive manufacturing concepts an...
Soft pneumatic actuators are ideal for soft robotic applications due to their innate compliance and ...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Recent years have seen major advances in the additive manufacturing of stimuli-responsive materials,...
Envisioning robotic devices with functionality resulting from processing rather than exclusively mat...
In analogy with developments in soft robotics it is anticipated that soft robotic functions at surfa...
Soft actuators allowing multifunctional, multishape deformations based on single polymer films or bi...
The idea of four-dimensional (4D) printing is the formation of intricate stimuli-responsive 3D archi...
The idea of four-dimensional (4D) printing is the formation of intricate stimuli-responsive 3D archi...
Conventional 4D printing technologies are realized by combining 3D printing with soft active materia...
This is the author manuscript accepted for publication and has undergone full peer review but has no...
There is a growing interest in the concept of four-dimensional (4D) printing that combines a three-d...
Recent years have seen major advances in the developments of both additive manufacturing concepts an...
Soft pneumatic actuators are ideal for soft robotic applications due to their innate compliance and ...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Recent years have seen major advances in the additive manufacturing of stimuli-responsive materials,...
Envisioning robotic devices with functionality resulting from processing rather than exclusively mat...
In analogy with developments in soft robotics it is anticipated that soft robotic functions at surfa...
Soft actuators allowing multifunctional, multishape deformations based on single polymer films or bi...
The idea of four-dimensional (4D) printing is the formation of intricate stimuli-responsive 3D archi...
The idea of four-dimensional (4D) printing is the formation of intricate stimuli-responsive 3D archi...
Conventional 4D printing technologies are realized by combining 3D printing with soft active materia...
This is the author manuscript accepted for publication and has undergone full peer review but has no...
There is a growing interest in the concept of four-dimensional (4D) printing that combines a three-d...
Recent years have seen major advances in the developments of both additive manufacturing concepts an...
Soft pneumatic actuators are ideal for soft robotic applications due to their innate compliance and ...