This case uses modified siloxane oligomers and stabilizing additives to improve light valve thermal stability, adhesion, and life.
Fluidized bed powder control stabilizes thermoplastic fiber impregnation and reduces fiber breakage.
A silicon-oxide contact layer between the thin-film stack and enamel broadens firing tolerance, improving color homogeneity.
This case combines heat-treated aluminum oxide, ion trapping, and addition curing to balance 1.0–7.0 W/m·K conductivity with hardness stability.
Alkyl- and halogen-substituted polymers improve film quality and photovoltaic efficiency.
A reacted polymer treatment forms a hydrophilic lens surface to reduce dryness without sacrificing silicone hydrogel oxygen permeability.
A reactive elastomer and inorganic filler help resin films resist cracks while limiting thermal expansion and curing volatiles.
A multilayer cover plate uses a high-modulus reinforcing layer and flexible filler to resist scratches while preserving bending performance.
A liquid crystal polyester composition tunes 6-hydroxy-2-naphthoic acid content and melting entropy for low-loss, stable laminates.
Hollow particles insulate conductive adhesive portions while resin preserves coating adhesion.
This case converts polyethylene and polypropylene resins into waxes, then oxidizes them for biodegradability and aqueous dispersion.
This polymer composition balances circuit-substrate heat resistance and mechanical strength with preserved high-frequency dielectric characteristics.
Retaining inorganic cations during amino acid exchange enables spontaneous clay delamination while improving polymer and coating barriers.
Separate display orientations, electronic straps, and flexible light seals address projection limits, comfort, and external light.
This coated glazing uses laser-formed deletions to increase local resistance, enabling deicing and defogging with fewer busbars.
Acrylic-silicone coatings combine epoxy curing with moisture stability and weatherability.
This case uses patterned electrodes, an electro-optic polymer, and reflection to achieve fast, accurate phase modulation.
A two-layer polyimide structure and inorganic layers help flexible displays resist heat, preserve insulation, and reduce afterimages.
Controlled molecular weight distribution and comonomer content improve flow while retaining stiffness and ductility in rotomolded parts.
Polycarbosilane additives enable solvent-free inkjet printing of thin, clear layers that resist plasma etching and limit crystallization.
Aligned LCP fibrils reinforce thermoplastic extrudates for simpler, recyclable production.
A nanostructure layer and refractive-index intermediate layers help imaging lenses maintain low reflectivity across conditions.
Planarization layers help preserve hydrophobic, easy-to-clean surfaces after abrasion.
This case uses mechanically exfoliated silicate platelets in a polymer lacquer to reduce gas permeation on flexible films.
A tuned eight-layer SiO2/ZrO2 coating lowers luminous reflectance and makes reflected light less conspicuous on spectacle lenses.
Controlled PAES domains in a PAEK matrix improve blend compatibility and uniform properties for semiconductor equipment.
A multi-step urethane synthesis improves shear-rate viscosity control, paint pick-up, splatter resistance, and film uniformity.
This composition replaces volatile aromatic solvents with glycol ether to form smooth, crack-resistant films with strong adhesion.
PAEK-PAES blends with carbon nanotubes and carbon black control phase domains for balanced wear, impact, and ESD performance.
Carbon nanotubes and carbon fibers support ESD, while fine PAEK–PAES domains balance rigidity, impact strength, and abrasion resistance.
Cure non-functionalized silane coatings rapidly at room temperature with UV initiators.
A grafted polymeric additive spaces titanium dioxide particles, reducing agglomeration and preserving paint opacity with less pigment.
A staged polymer combines Tg-differentiated components and heterocyclic monomers to resist dirt without sacrificing coating film formation.
Meta-conjugated polymers pair neutral-state transparency with visible and near-infrared blocking.
A transmittance adjustment member uses local regions over pixel openings and circuit portions to improve extraction and reduce reflection.
This coating case uses separate tintable bases with different sheen or gloss to customize finishes while reducing inventory complexity.
This case uses dispersed piezoelectric particles in a polymer matrix to support thin speakers and flexible displays in low temperatures.
This case uses controlled sizing on carbon fibers to improve molded-body strength while preserving lightweight resin benefits.
Recessed conductive meshes balance touch sensing with light extraction and reduce bezel width in integrated display panels.
A stabilized pigment-polymer composition keeps building-panel coatings homogeneous across -40°F to 120°F, avoiding extra layers.
Highly branched surfactants limit PVDF agglomeration, preserving re-dispersibility while removing fluorinated surfactants.
Click-made triazole organosiloxane polymers balance hardness, abrasion resistance, and light transmittance in PFAS-free coatings.
A low-viscosity polycycloolefin composition forms transparent OLED coatings that match refractive index and protect against moisture.
A low-viscosity cellulose derivative binds water in the hardener, enabling factory-set stoichiometry and single-layer slip resistance.
Partial exchange with protonated amino acids enables layered silicate delamination into single lamellae for improved polymer barriers.
Carboxylic acid stabilizes organopolysiloxane in aprotic solvents for stronger adhesion.
This case combines direct thermoplastic adhesion with controlled oil migration, preserving lubricity and reducing mold fouling.
Focused radiation drives dye migration from a colour ribbon into selected plastic regions for sharp, accurate partial colouring.
Acryl-based and silicon- or epoxy-based hard-coating layers curl oppositely during curing, balancing forces to prevent cover-window bending.
This case uses a moisture-curable composition for local backside repair, avoiding costly whole-module replacement and reducing waste.