We report on the first, to the best of our knowledge, studies of photorefraction in nematic liquid crystal (LC) doped with nanoferroelectric particles. We found the strong enhancement of two-beam coupling in the colloid of ferroelectric nanoparticles in LC. The effect originated from an increased birefringence of the colloid and a stronger LC reorientation torque. Our measurements allowed us to suggest that increased birefringence is caused by the contribution of polarizability anisotropy of the ferroelectric particles. Stronger reorientation torque is caused by the permanent dipole moment of the particles contributing to the dielectric anisotropy ofthe colloid a col. The enhancement of two-beam coupling in LCs by doping with ferroelectric ...
A large number of interesting phenomena related to the insertion of colloidal particles in liquid cr...
It has been observed that the polymeric nanoparticles, copolymer of polybenzene and anthracene (PBA ...
New materials and techniques are needed to advance terahertz science and technology. Liquid crystals...
The main aim of this project was to characterise electrical and optical effects in hybrid liquid cry...
Very dilute suspensions of BaTio3 nanoparticles in liquid crystals seem to have remarkable effect on...
Functional materials based on ferroelectric, inorganic nanoparticles, and low refractive index nemat...
We investigated the physical properties of low concentration ferroelectric nematic colloids, using c...
We investigate the dielectric and polarization properties of a suspension of low concentration ferro...
Blending nanomaterials with liquid crystal (LC) is considered to be a prospective method to enhance ...
The dispersion of ferroelectric nanomaterials in liquid crystals has recently emerged as a promising...
The size, size distribution and shape of ferroelectric BaTiO3 nanoparticles were determined using th...
International audienceThe effect of Sn2P2S6 ferroelectric nanoparticles dispersed in 8CB liquid crys...
As-synthesized deformed helix ferroelectric liquid crystal (FLC) material with high spontaneous pola...
<p>Nanocolloids consisting of a ferroelectric liquid crystal (FLC) doped with different concentratio...
Recent experiments have reported that ferroelectric nanoparticles have drastic effects on nematic li...
A large number of interesting phenomena related to the insertion of colloidal particles in liquid cr...
It has been observed that the polymeric nanoparticles, copolymer of polybenzene and anthracene (PBA ...
New materials and techniques are needed to advance terahertz science and technology. Liquid crystals...
The main aim of this project was to characterise electrical and optical effects in hybrid liquid cry...
Very dilute suspensions of BaTio3 nanoparticles in liquid crystals seem to have remarkable effect on...
Functional materials based on ferroelectric, inorganic nanoparticles, and low refractive index nemat...
We investigated the physical properties of low concentration ferroelectric nematic colloids, using c...
We investigate the dielectric and polarization properties of a suspension of low concentration ferro...
Blending nanomaterials with liquid crystal (LC) is considered to be a prospective method to enhance ...
The dispersion of ferroelectric nanomaterials in liquid crystals has recently emerged as a promising...
The size, size distribution and shape of ferroelectric BaTiO3 nanoparticles were determined using th...
International audienceThe effect of Sn2P2S6 ferroelectric nanoparticles dispersed in 8CB liquid crys...
As-synthesized deformed helix ferroelectric liquid crystal (FLC) material with high spontaneous pola...
<p>Nanocolloids consisting of a ferroelectric liquid crystal (FLC) doped with different concentratio...
Recent experiments have reported that ferroelectric nanoparticles have drastic effects on nematic li...
A large number of interesting phenomena related to the insertion of colloidal particles in liquid cr...
It has been observed that the polymeric nanoparticles, copolymer of polybenzene and anthracene (PBA ...
New materials and techniques are needed to advance terahertz science and technology. Liquid crystals...