The reflection band of polymer stabilized cholesteric liquid crystals with negative dielectric anisotropy can be broadened by DC electric fields, which was ascribed to the pitch gradient caused by the motion of the structural chirality, that is, the polymer network. They systematically varied the mixture components, such as the photo-initiator concentration, the monomer functionality, and the chiral dopant, to explore their influences on the reflection band broadening behavior. They learned how to control the polymer network morphology and ion density, which in turn determined the reflection bandwidth. By optimizing the mixture, they have greatly enhanced the broadening effect and achieved large bandwidth at low voltages. (c) 2017 Wiley Per...
In the past decade, chiral nematic liquid crystals (LCs) have emerged as an attractive material for ...
International audienceWe have studied the effect of an electric field on a binary mixture between a ...
We report the effect of an anisotropic polymer network formed from an achiral photoreactive monomer ...
We report on the preparation of color-tunable mirrors based on electrically regulated bandwidth broa...
The electro-optic response of polymer stabilised cholesteric liquid crystals can manifest as switchi...
A white reflecting polymer-stabilized cholesteric textured liquid-crystal cell was created by incorp...
The dynamic electro‐optic (EO) response of polymer‐stabilized cholesteric liquid crystals prepared u...
International audienceCholesteric liquid crystals (CLCs) may selectively reflect light when the heli...
We report the use of a low concentration polymer network to stabilize electric field-induced diffrac...
International audiencePolymer-stabilized cholesteric liquid crystals ͑PSCLCs͒ with a double-handed c...
Photopolymerization of liquid-crystalline [LC] monomers produces polymer films with a spatial contro...
When a certain range of frequencies of AC electric fields are applied to a chiral nematic (N*) liqui...
International audienceThe ultraviolet (UV) light‐absorbing properties of the liquid crystal (LC) con...
In this paper we discuss the optical reflective properties of single and multidomain cholesteric liq...
We report a method of broadening the reflection bandwidth of polymer-stabilized cholesteric liquid c...
In the past decade, chiral nematic liquid crystals (LCs) have emerged as an attractive material for ...
International audienceWe have studied the effect of an electric field on a binary mixture between a ...
We report the effect of an anisotropic polymer network formed from an achiral photoreactive monomer ...
We report on the preparation of color-tunable mirrors based on electrically regulated bandwidth broa...
The electro-optic response of polymer stabilised cholesteric liquid crystals can manifest as switchi...
A white reflecting polymer-stabilized cholesteric textured liquid-crystal cell was created by incorp...
The dynamic electro‐optic (EO) response of polymer‐stabilized cholesteric liquid crystals prepared u...
International audienceCholesteric liquid crystals (CLCs) may selectively reflect light when the heli...
We report the use of a low concentration polymer network to stabilize electric field-induced diffrac...
International audiencePolymer-stabilized cholesteric liquid crystals ͑PSCLCs͒ with a double-handed c...
Photopolymerization of liquid-crystalline [LC] monomers produces polymer films with a spatial contro...
When a certain range of frequencies of AC electric fields are applied to a chiral nematic (N*) liqui...
International audienceThe ultraviolet (UV) light‐absorbing properties of the liquid crystal (LC) con...
In this paper we discuss the optical reflective properties of single and multidomain cholesteric liq...
We report a method of broadening the reflection bandwidth of polymer-stabilized cholesteric liquid c...
In the past decade, chiral nematic liquid crystals (LCs) have emerged as an attractive material for ...
International audienceWe have studied the effect of an electric field on a binary mixture between a ...
We report the effect of an anisotropic polymer network formed from an achiral photoreactive monomer ...