We observed that the doping of alumina nanoparticles (AL-NPs) has suppressed the undesired ionic effect in ferroelectric liquid crystals (FLCs). The pure and AL-NPs doped FLC cells were analysed by means of dielectric spectroscopy and electrical resistivity/conductivity measurements. Dielectric loss spectra confirmed the disappearance of the low-frequency relaxation peak, which appears due to the presence of ionic impurities in the FLC materials. The reduction of ionic effects has been attributed to the strong adsorption of ionic impurities on the surface of AL-NPs. The adsorption capability of AL-NPs has been studied with both the size and their concentration in FLC material. This study would be helpful to minimize the undesired ionic effe...
In this article, we present the formulation and characterization of a ferroelectric liquid crystal (...
Ces travaux de thèse ont porté sur des matériaux constitués de dispersions de particules colloïdales...
In this paper, for the first time, the influence of the $BaTiO_{3}$ particles on the antiferroelectr...
Very dilute suspensions of BaTio3 nanoparticles in liquid crystals seem to have remarkable effect on...
The dispersion of ferroelectric nanomaterials in liquid crystals has recently emerged as a promising...
The presence of ions in liquid crystals is one of the grand challenges that hinder the application o...
We investigate the dielectric and polarization properties of a suspension of low concentration ferro...
Image sticking in thin film transistor-liquid crystal displays (TFT-LCD) is related to the dielectri...
The influence of gold nanoparticles dispersed in ferroelectric liquid crystals (FLCs) on the propert...
Improving image sticking in liquid crystal display (LCD) has attracted tremendous interest because o...
We present the characterisation and dielectric relaxation spectroscopy of a ferroelectric liquid cry...
Blending nanomaterials with liquid crystal (LC) is considered to be a prospective method to enhance ...
We have investigated the impact of titanium dioxide nanoparticles on the ionic contamination of liqu...
We construct a theoretical model of the dielectric properties of a ferroelectric LC nanosuspension (...
AbstractThe influence of Fe3O4 nanoparticles on dielectric properties of planar oriented liquid crys...
In this article, we present the formulation and characterization of a ferroelectric liquid crystal (...
Ces travaux de thèse ont porté sur des matériaux constitués de dispersions de particules colloïdales...
In this paper, for the first time, the influence of the $BaTiO_{3}$ particles on the antiferroelectr...
Very dilute suspensions of BaTio3 nanoparticles in liquid crystals seem to have remarkable effect on...
The dispersion of ferroelectric nanomaterials in liquid crystals has recently emerged as a promising...
The presence of ions in liquid crystals is one of the grand challenges that hinder the application o...
We investigate the dielectric and polarization properties of a suspension of low concentration ferro...
Image sticking in thin film transistor-liquid crystal displays (TFT-LCD) is related to the dielectri...
The influence of gold nanoparticles dispersed in ferroelectric liquid crystals (FLCs) on the propert...
Improving image sticking in liquid crystal display (LCD) has attracted tremendous interest because o...
We present the characterisation and dielectric relaxation spectroscopy of a ferroelectric liquid cry...
Blending nanomaterials with liquid crystal (LC) is considered to be a prospective method to enhance ...
We have investigated the impact of titanium dioxide nanoparticles on the ionic contamination of liqu...
We construct a theoretical model of the dielectric properties of a ferroelectric LC nanosuspension (...
AbstractThe influence of Fe3O4 nanoparticles on dielectric properties of planar oriented liquid crys...
In this article, we present the formulation and characterization of a ferroelectric liquid crystal (...
Ces travaux de thèse ont porté sur des matériaux constitués de dispersions de particules colloïdales...
In this paper, for the first time, the influence of the $BaTiO_{3}$ particles on the antiferroelectr...