4D printing is an emerging additive manufacturing technology that combines the precision of 3D printing with the versatility of smart materials. 4D printed objects can change their shape over time with the application of a stimulus (i.e., heat, light, moisture). Light driven smart materials are attractive because light is wireless, remote, and can induce a rapid shape change. Herein, we present a method for fabricating polymeric bilayer actuators via 3D printing which reversibly change their shape upon exposure to light. The photoactive layer consists of a poly(siloxane) containing pendant azobenzene groups. Two different photoactive polymers were synthesized, and the photomechanical effect displayed by the bilayers was evaluated. These bi...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Additive manufacturing strives to combine any combination of materials into 3D functional structures...
Compared with traditional stimuli-responsive devices with simple planar or tubular geometries, 3D pr...
4D printing is an emerging additive manufacturing technology that combines the precision of 3D print...
4D printing is an emerging additive manufacturing technology that combines the precision of 3D print...
4D printing is an emerging additive manufacturing technology that combines 3D printing with smart ma...
Controls over stimuli-responsive functional materials and programmable shape deformations are key fe...
New photo-curable polymers for 3D printing are provided, exhibiting mechanical light-responsivity up...
Remote light exposure of photoresponsive liquid crystalline polymers has drawn great attention over ...
4D printing is based on 3D printing of objects that can change their shape upon a proper triggering....
Soft and mechanically responsive actuators hold the promise to revolutionize the design and manufact...
Four-dimensional (4D) printing can add active and responsive functions to three-dimensional (3D) pri...
\u3cp\u3eSoft matter elements undergoing programed, reversible shape change can contribute to fundam...
Recent years have seen major advances in the additive manufacturing of stimuli-responsive materials,...
A reconfigurable actuator is a stimuli-responsive structure that can be programmed to adapt differen...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Additive manufacturing strives to combine any combination of materials into 3D functional structures...
Compared with traditional stimuli-responsive devices with simple planar or tubular geometries, 3D pr...
4D printing is an emerging additive manufacturing technology that combines the precision of 3D print...
4D printing is an emerging additive manufacturing technology that combines the precision of 3D print...
4D printing is an emerging additive manufacturing technology that combines 3D printing with smart ma...
Controls over stimuli-responsive functional materials and programmable shape deformations are key fe...
New photo-curable polymers for 3D printing are provided, exhibiting mechanical light-responsivity up...
Remote light exposure of photoresponsive liquid crystalline polymers has drawn great attention over ...
4D printing is based on 3D printing of objects that can change their shape upon a proper triggering....
Soft and mechanically responsive actuators hold the promise to revolutionize the design and manufact...
Four-dimensional (4D) printing can add active and responsive functions to three-dimensional (3D) pri...
\u3cp\u3eSoft matter elements undergoing programed, reversible shape change can contribute to fundam...
Recent years have seen major advances in the additive manufacturing of stimuli-responsive materials,...
A reconfigurable actuator is a stimuli-responsive structure that can be programmed to adapt differen...
Soft matter elements undergoing programed, reversible shape change can contribute to fundamental adv...
Additive manufacturing strives to combine any combination of materials into 3D functional structures...
Compared with traditional stimuli-responsive devices with simple planar or tubular geometries, 3D pr...