Highly tunable 3D liquid photonic crystals are demonstrated using low-dc-field-driven polymer-stabilized blue-phase liquid crystals. The central wavelength of the photonic band gap can be reversibly shifted to more than 200 nm away from the original position. Besides, by controlling the polymerization-induced morphology variations, the band gap can also be expanded from a bandwidth of around 30 nm to at least 310 nm, the first time a “white” blue phase is observed. Both types of band-gap modulation, namely, shifting and expansion, can be independently manipulated in any crystal axis without affecting the lattice spacings in the other dimensions. We envision polymer-stabilized blue-phase liquid crystals as a fascinating platform for photonic...
A lasing peak shift of more than 100 nm is realized due to the large shift of a photonic bandgap of ...
Polymer-stabilized blue-phase liquid crystal (BPLC) comprising fluorinated compounds with high resis...
Blue phase (BP) liquid crystals, which self-assemble into soft three-dimensional (3D) photonic cryst...
Highly tunable 3D liquid photonic crystals are demonstrated using low-dc-field-driven polymer-stabil...
Liquid-crystalline polymers are materials of considerable scientific interest and technological valu...
In this paper, we demonstrate electric field-induced wavelength tuning of the entire photonic b...
Polymer-stabilized optically isotropic liquid crystals, including blue phases, are emerging as a str...
Electrically tunable three-dimensional photonic crystals with a tunable wavelength range of over 70 ...
Polymer-stabilized optically isotropic liquid crystals, including blue phases, are emerging as a str...
Soft matter, self-assembled 3D photonic structures such as blue phase liquid crystals have of great ...
Owing to fundamental reasons of symmetry, liquid crystals are soft materials. This softness allows l...
Chiral liquid crystals (CLCs) are known to self-organize into helical structures with periodicities ...
[[abstract]]Photonic crystals (PCs) have many potential applications because of their ability to con...
Polymer-stabilized blue phase liquid crystals (PS-BPLC) have become an increasingly important techno...
Polymer-stabilized blue phase liquid crystals (PS-BPLC) have become an increasingly important techno...
A lasing peak shift of more than 100 nm is realized due to the large shift of a photonic bandgap of ...
Polymer-stabilized blue-phase liquid crystal (BPLC) comprising fluorinated compounds with high resis...
Blue phase (BP) liquid crystals, which self-assemble into soft three-dimensional (3D) photonic cryst...
Highly tunable 3D liquid photonic crystals are demonstrated using low-dc-field-driven polymer-stabil...
Liquid-crystalline polymers are materials of considerable scientific interest and technological valu...
In this paper, we demonstrate electric field-induced wavelength tuning of the entire photonic b...
Polymer-stabilized optically isotropic liquid crystals, including blue phases, are emerging as a str...
Electrically tunable three-dimensional photonic crystals with a tunable wavelength range of over 70 ...
Polymer-stabilized optically isotropic liquid crystals, including blue phases, are emerging as a str...
Soft matter, self-assembled 3D photonic structures such as blue phase liquid crystals have of great ...
Owing to fundamental reasons of symmetry, liquid crystals are soft materials. This softness allows l...
Chiral liquid crystals (CLCs) are known to self-organize into helical structures with periodicities ...
[[abstract]]Photonic crystals (PCs) have many potential applications because of their ability to con...
Polymer-stabilized blue phase liquid crystals (PS-BPLC) have become an increasingly important techno...
Polymer-stabilized blue phase liquid crystals (PS-BPLC) have become an increasingly important techno...
A lasing peak shift of more than 100 nm is realized due to the large shift of a photonic bandgap of ...
Polymer-stabilized blue-phase liquid crystal (BPLC) comprising fluorinated compounds with high resis...
Blue phase (BP) liquid crystals, which self-assemble into soft three-dimensional (3D) photonic cryst...