A hollow inorganic shell structure lowers the dielectric constant of resin compositions.
Sulphuric acid leaching of the residual slag converts hazardous red mud into aluminium sulphate, ferric sulphate, and titanium sulphate.
Molding aerogel around a mandrel produces lightweight optics that maintain alignment stability in space applications.
Magnetic separation removes magnetizable particles from amorphous silica powder to enhance semiconductor sealing material properties.
A multi-step process recovers high-purity fluorine and silicon from phosphate ore tail gas using forward osmosis and microemulsion reactors.
A porous silica film maintains a refractive index of 1.3 or lower through controlled sol-gel reactions.
Acid fractionation and base extraction yield high-purity lignin and silica mixtures, replacing carbon black in sustainable elastomer formulations.
Heat treatment of quartz sand yields stable cristobalite particles, eliminating fines generation during grinding.
Sintered silica fiber supports reduce zeolite membrane costs while maintaining mechanical strength.
Vacuum infiltration of chitosan-coated mesoporous silica nanoparticles fortifies cell walls against Fusarium wilt, increasing fruit weight by 70%.
In situ hydrophobicization modifies silica gel surfaces to eliminate hazardous supercritical drying steps while maintaining structural integrity.
Epoxy and thiol silanes cross-link rapidly at ambient temperatures, reducing curing time while providing superior corrosion resistance on metal substrates.
A silica-phosphate catalyst resists crushing and pressure variations during lactic acid conversion to acrylic acid.
Zinc adheres to amorphous silica particles and heats between 1,000°C and 1,500°C to form crystalline silica without alkali metal contamination.
Heating or ball-milling silicon with metal oxides creates a composite that suppresses volume expansion during cycling.
A process reacting CO2 with natural mineral phases in an aqueous slurry to produce carbonated solids.
Fluorine-doped mesoporous silica adsorbents separate tritium from wastewater without toxic gases or high energy consumption.
Replacing organic templates with inorganic amines reduces production costs while maintaining catalytic activity.
Process converts fly ash into high silica zeolites without external silica sources, removing non-reactive phases to enhance commercial viability.
Composite materials reinforce the scanning probe microscope measuring loop, reducing thermal drift while maintaining high stiffness for atomic resolution.
Replacing carcinogenic cristobalite and quartz with a high-purity diopside phase reduces inhalation risks without sacrificing chemical stability.
High temperature treatment of carbon doped silica granules produces high purity quartz glass bodies.
Alcoholic hydroxyl compounds stabilize aqueous silica dispersions to suppress free water generation in cold and high-temperature cementing operations.
Surfactant micelle templates enable ultra-large pore formation on diverse supports under mild chemical conditions.
Combustion-produced silica powder with 300-500 nm diameter resolves the contradiction between low viscosity and gap permeability in semiconductor sealants.
Continuous online viscosity monitoring during solvent removal eliminates offline loss factor testing, improving reproducibility and space-time yield.
An asymmetric amorphous trivalent network resolves manufacturing complexity while maintaining a complete photonic band gap for optical components.
A silica xerogel composite sheet with unwoven fabric fibers provides thermal insulation.
Silane coupling agents bridge inorganic fillers and organic polymers, maintaining far infrared emissivity through durable chemical bonds.
Synthesizing SSZ-109 with tailored organic cations resolves synthesis complexity while delivering unique adsorption and catalytic properties.
A ceramic glaze composition incorporating nanopowder and specific mineral ratios creates a surface layer that resists wax adhesion.
Controlled surface parameters of precipitated silica improve thixotropy while preventing moisture-induced hydrolysis in RTV silicone systems.
Reflux synthesis with surfactants creates ordered mesoporous particles, reducing the long duration of static hydrothermal processes.