Matched quarter-wave plate retardance and reflective polarization improve VR brightness while minimizing ghost images.
This case combines liquid-crystal compounds with at least 1% dichroic dye for stable, uniform, high-contrast solar dimming.
Specific LC structures and dye concentrations balance contrast, switching uniformity, and phase stability in dimmable windows.
This case combines dichroic dye with CTAB and SDS to reduce drive voltage and avoid electrode ion accumulation.
Heteroaromatic compounds stabilize liquid crystals for low-loss microwave switching.
Patterned cholesteric liquid crystal layers equalize light-guide brightness.
This case uses DC-field polymerisation to orient polymer networks, reducing residual haze in low-energy privacy-window switching.
New liquid crystal media stabilize ferroelectric nematic phases at room temperature.
Fluorinated compounds and composite mixtures broaden ferroelectric nematic phases for faster, lower-voltage, energy-saving displays.
Formula-based LC mixtures combine high birefringence and low viscosity to reduce image sticking and support reliable VA/FFS displays.
This case combines fluororesin with a high-flow resin to improve dispersion, strand appearance, and thermal stability.
A high-flow resin with bonding groups improves fluororesin compatibility, dispersion, and molded strand appearance.
A tailored LC medium balances fast switching, negative anisotropy, UV reliability, and high VHR in VA and FFS displays.
A compatibilizer bridges LCP and fluoropolymer for stronger, lower-expansion PCB laminates with improved electrical properties.
Hindered amine inhibitors protect liquid crystal layers from high-energy light damage.
A tailored negative-dielectric-anisotropy LC medium combines compound types to reduce mura, speed switching, and improve UV stability.
A mesogen polymer dispersant prevents aggregation of high-index particles while supporting liquid crystal alignment for low-haze films.
A thermoplastic polymer matrix with a deflection temperature of at least 50°C resists lens distortion and preserves image quality.
This liquid-crystal medium combines cyclic carbonate and carbonic ester compounds to reduce viscosity and improve low-temperature stability.