We propose a deformable photonic crystal that exhibits the thermal-mediative shape memory effect. The chiral liquid crystalline polymeric scaffold, which produces the structural colors from a helical twist of the liquid crystal director, is prepared through phase-stabilization of a reactive mesogen in a small molecular chiral liquid crystal (CLC), polymerization, and removal of the CLC. The prepolymer of polyurethane acrylate (PUA) is then infiltrated in the prepared scaffold and subsequently photo-polymerized to form a CLC-PUA composite film. Upon compression, this film shows the blue shift of the structural color and retains this color-shift as released from compression. As the temperature increases, the color is recovered to a pristine s...
A photonic shape memory polymer film that shows large color response (∼155 nm) in a wide temperature...
Control over molecular motion is facilitated in materials with highly ordered nanoscale structures. ...
Control over molecular motion is facilitated in materials with highly ordered nanoscale structures. ...
We propose a deformable photonic crystal that exhibits the thermal-mediative shape memory effect. Th...
The fabrication of shape memory coatings that change both reflectivity and topography is hampered by...
The fabrication of shape memory coatings that change both reflectivity and topography is hampered by...
The fabrication of shape memory coatings that change both reflectivity and topography is hampered by...
\u3cp\u3eThe fabrication of shape memory coatings that change both reflectivity and topography is ha...
Chiral liquid crystals (CLCs) spontaneously form a supramolecular helical structure due to the helic...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Mechanochromic photonic polymers, which can change structural color upon mechanical deformation, are...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
The UV intensity during photopolymerization allows control over the structural color of a cholesteri...
The UV intensity during photopolymerization allows control over the structural color of a cholesteri...
\u3cp\u3eMechanochromic photonic polymers, which can change structural color upon mechanical deforma...
A photonic shape memory polymer film that shows large color response (∼155 nm) in a wide temperature...
Control over molecular motion is facilitated in materials with highly ordered nanoscale structures. ...
Control over molecular motion is facilitated in materials with highly ordered nanoscale structures. ...
We propose a deformable photonic crystal that exhibits the thermal-mediative shape memory effect. Th...
The fabrication of shape memory coatings that change both reflectivity and topography is hampered by...
The fabrication of shape memory coatings that change both reflectivity and topography is hampered by...
The fabrication of shape memory coatings that change both reflectivity and topography is hampered by...
\u3cp\u3eThe fabrication of shape memory coatings that change both reflectivity and topography is ha...
Chiral liquid crystals (CLCs) spontaneously form a supramolecular helical structure due to the helic...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Mechanochromic photonic polymers, which can change structural color upon mechanical deformation, are...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
The UV intensity during photopolymerization allows control over the structural color of a cholesteri...
The UV intensity during photopolymerization allows control over the structural color of a cholesteri...
\u3cp\u3eMechanochromic photonic polymers, which can change structural color upon mechanical deforma...
A photonic shape memory polymer film that shows large color response (∼155 nm) in a wide temperature...
Control over molecular motion is facilitated in materials with highly ordered nanoscale structures. ...
Control over molecular motion is facilitated in materials with highly ordered nanoscale structures. ...