Titanium tetraisopropanolate is a titanium alkoxide used as a catalyst, crosslinking agent, and precursor in sol-gel and oxide-ceramic synthesis.
Titanium tetraisopropanolate is valued for fast hydrolysis, high reactivity, and ability to form titanium dioxide films and coatings.
Titanium tetraisopropanolate is widely used in adhesives, coatings, nanomaterials, and polymer modification.
Titanium tetraisopropanolate provides excellent adhesion, crosslinking performance, and surface treatment capability.
CAS Number: 546-68-9
EC Number: 208-915-9
Molecular Formula: C12H28O4Ti
Molecular Weight: 284.22 g/mol
Synonyms: Titanium isopropoxide, Titanium(IV) isopropoxide, TTIP, Titanium tetraisopropoxide, Titanium isopropanolate, Ti(O-i-Pr)4, Tetraisopropyl titanate, Titanium alkoxide precursor, Titanium ester catalyst, Sol-gel titanium precursor, Titanium tetraisopropanolate, Titanium Tetraisopropoxide, Titanium(IV) isopropoxide, TTIP, Ti(OiPr)₄, Titanium Isopropoxide, Tetraisopropyl Titanate, Tetraisopropoxy Titanium, Titanium(IV) Tetraisopropanolate, Titanium Alkoxide, Titanium Alcoholate, Titanium Isopropoxide Solution, Titanium Isopropoxide Reagent, Titanium Isopropoxide Monomer, Titanium Isopropoxide Liquid, Titanium Isopropoxide Chemical, Titanium Tetraisopropanolate Compound, Titanium Tetraisopropanolate Material, Titanium Tetraisopropanolate Product, Titanium Tetraisopropanolate Substance, Titanium Tetraisopropanolate Technical Grade, Titanium Tetraisopropanolate Industrial Grade, Titanium Tetraisopropanolate Laboratory Grade, Titanium Tetraisopropanolate Research Grade, Titanium Tetraisopropanolate High Purity, Titanium Tetraisopropanolate Extra Pure, Titanium Tetraisopropanolate Pure, Titanium Tetrais
APPLICATIONS
Titanium tetraisopropanolate is used in sol-gel processes to prepare titanium dioxide coatings.
Titanium tetraisopropanolate forms transparent oxide layers in optical coatings.
Titanium tetraisopropanolate is used in thin-film semiconductor manufacturing.
Titanium tetraisopropanolate is used as a catalyst in esterification reactions.
Titanium tetraisopropanolate improves yields in transesterification systems.
Titanium tetraisopropanolate promotes polymer chain-end modification.
Titanium tetraisopropanolate is used as a crosslinking agent in polymer systems.
Titanium tetraisopropanolate improves coating adhesion and hardness.
Titanium tetraisopropanolate enhances chemical resistance of cured films.
Titanium tetraisopropanolate is used to manufacture high-purity titanium dioxide nanoparticles.
Titanium tetraisopropanolate enables controlled nano-crystal growth.
Titanium tetraisopropanolate improves photocatalytic surface properties.
Titanium tetraisopropanolate is used in aerospace composite matrices.
Titanium tetraisopropanolate enhances thermal resistance in structural laminates.
Titanium tetraisopropanolate improves matrix-fiber adhesion.
Titanium tetraisopropanolate is used in inkjet-printable ceramic solutions.
Titanium tetraisopropanolate improves film uniformity and adhesion.
Titanium tetraisopropanolate supports 3D-printed ceramic structures.
Titanium tetraisopropanolate is used in surface treatments for glass and metal substrates.
Titanium tetraisopropanolate improves corrosion resistance in high-performance coatings.
Titanium tetraisopropanolate enhances hydrophobic or hydrophilic surface tuning.
Titanium tetraisopropanolate is used in organic-inorganic hybrid materials.
Titanium tetraisopropanolate provides controlled inorganic network formation.
Titanium tetraisopropanolate increases mechanical stability of hybrid films.
Titanium tetraisopropanolate is used in catalyst supports and functional ceramics.
Titanium tetraisopropanolate enhances catalytic surface activity.
Titanium tetraisopropanolate improves thermal stability of ceramic frameworks.
Titanium tetraisopropanolate is used in specialty adhesives for electronics and optics.
Titanium tetraisopropanolate supports fast curing and strong bonding.
Titanium tetraisopropanolate increases dielectric strength in insulating coatings.
Titanium tetraisopropanolate is used as a precursor for titanium dioxide synthesis.
Titanium tetraisopropanolate is applied in sol-gel processes to produce TiO₂ coatings.
Titanium tetraisopropanolate enhances photocatalytic film preparation.
Titanium tetraisopropanolate is utilized in semiconductor fabrication.
Titanium tetraisopropanolate forms high-purity dielectric layers.
Titanium tetraisopropanolate supports deposition of titanium-based thin films.
Titanium tetraisopropanolate is used in ceramic production.
Titanium tetraisopropanolate improves ceramic matrix uniformity.
Titanium tetraisopropanolate enhances thermal and mechanical properties in advanced ceramics.
Titanium tetraisopropanolate is applied in organic synthesis as a catalyst.
Titanium tetraisopropanolate catalyzes esterification reactions.
Titanium tetraisopropanolate promotes transesterification processes in fine chemicals.
Titanium tetraisopropanolate is used in polymer modification.
Titanium tetraisopropanolate acts as a crosslinking catalyst for polyester resins.
Titanium tetraisopropanolate improves polymer thermal stability and curing.
Titanium tetraisopropanolate is used in coatings and protective films.
Titanium tetraisopropanolate forms durable transparent oxide layers.
Titanium tetraisopropanolate increases abrasion and chemical resistance in coatings.
Titanium tetraisopropanolate is used in high-performance optical materials.
Titanium tetraisopropanolate participates in optical thin-film deposition.
Titanium tetraisopropanolate improves refractive index control in optical coatings.
Titanium tetraisopropanolate is employed in 3D printing ceramic materials.
Titanium tetraisopropanolate enhances inorganic binder systems for additive manufacturing.
Titanium tetraisopropanolate improves dimensional stability of printed ceramic structures.
Titanium tetraisopropanolate is used in aerospace composite coatings.
Titanium tetraisopropanolate provides high-temperature protective ceramic films.
Titanium tetraisopropanolate improves oxidation resistance in lightweight metal structures.
Titanium tetraisopropanolate is used in antireflective coatings.
Titanium tetraisopropanolate enhances transparency and light transmission.
Titanium tetraisopropanolate is applied in optical lens nanocoating systems.
Titanium tetraisopropanolate is used in advanced battery research.
Titanium tetraisopropanolate produces titanium-based electrode materials.
Titanium tetraisopropanolate enhances ionic conductivity in energy storage components.
Titanium tetraisopropanolate is used in photovoltaic research.
Titanium tetraisopropanolate contributes to dye-sensitized solar cell fabrication.
Titanium tetraisopropanolate supports nanocrystalline TiO₂ layer formation.
Titanium tetraisopropanolate is applied in fire-resistant coatings.
Titanium tetraisopropanolate improves heat shielding and fire retardancy.
Titanium tetraisopropanolate enhances inorganic binder performance in protective coatings.
Titanium tetraisopropanolate is used in catalyst support preparation.
Titanium tetraisopropanolate produces titanium-oxide catalytic matrices.
Titanium tetraisopropanolate improves dispersion and activity of supported catalysts.
Titanium tetraisopropanolate is utilized in research laboratories.
Titanium tetraisopropanolate serves as a controlled titanium source for academic studies.
Titanium tetraisopropanolate supports nanomaterial and inorganic synthesis experiments.
Titanium tetraisopropanolate is used in high-purity titanium oxide nanoparticle synthesis.
Titanium tetraisopropanolate supports production of anatase-phase TiO₂ for photocatalysis.
Titanium tetraisopropanolate enables synthesis of rutile-phase TiO₂ for high-temperature coatings.
Titanium tetraisopropanolate is used in anti-fog coating formulations.
Titanium tetraisopropanolate enhances hydrophilic surface behavior for vision clarity systems.
Titanium tetraisopropanolate improves surface self-cleaning properties under UV exposure.
Titanium tetraisopropanolate is used in antimicrobial coating technology.
Titanium tetraisopropanolate supports photocatalytic sterilization surfaces in hospitals.
Titanium tetraisopropanolate contributes to hygienic self-disinfection coating systems.
Titanium tetraisopropanolate is used in aerospace ceramic-metal hybrid materials.
Titanium tetraisopropanolate forms ultra-thin protective oxide layers for turbine components.
Titanium tetraisopropanolate enhances oxidation resistance in aerospace alloys.
Titanium tetraisopropanolate is used in automotive catalytic converter research.
Titanium tetraisopropanolate provides titanium support matrices for catalytic metals.
Titanium tetraisopropanolate improves exhaust after-treatment durability.
Titanium tetraisopropanolate is used in hydrogen production catalyst systems.
Titanium tetraisopropanolate enhances catalytic water-splitting efficiency.
Titanium tetraisopropanolate supports photocatalysts in hydrogen fuel development.
Titanium tetraisopropanolate is used in fuel-cell electrode engineering.
Titanium tetraisopropanolate improves electrode conductivity and corrosion resistance.
Titanium tetraisopropanolate enables nano-engineered catalytic interfaces.
Titanium tetraisopropanolate is applied in high-performance pigment formulations.
Titanium tetraisopropanolate improves pigment dispersion and UV stability.
Titanium tetraisopropanolate contributes to bright white inorganic pigment systems.
Titanium tetraisopropanolate is used in polymer nanocomposite research.
Titanium tetraisopropanolate forms TiO₂-reinforced polymer matrices with improved strength.
Titanium tetraisopropanolate enhances thermal and mechanical properties in plastics.
Titanium tetraisopropanolate is used in scratch-resistant coatings.
Titanium tetraisopropanolate increases hardness of protective surface layers.
Titanium tetraisopropanolate supports surface durability for electronics and optics.
Titanium tetraisopropanolate is used in flame-retardant inorganic coating systems.
Titanium tetraisopropanolate promotes ceramic barrier formation under heat.
Titanium tetraisopropanolate improves thermal shielding performance in fire-protection materials.
Titanium tetraisopropanolate is applied in solar-reflective roof coatings.
Titanium tetraisopropanolate increases solar reflectivity for energy-efficient building materials.
Titanium tetraisopropanolate improves long-term weather durability in exterior coatings.
Titanium tetraisopropanolate is used in aerospace nanocoating R&D programs.
Titanium tetraisopropanolate supports corrosion-proof coatings on space structures.
Titanium tetraisopropanolate enables low-density high-strength ceramic technology for satellites.
Titanium tetraisopropanolate is used in biomedical implant surface engineering.
Titanium tetraisopropanolate forms bioactive TiO₂ coating layers for osseointegration.
Titanium tetraisopropanolate enhances long-term biocompatibility of orthopedic implants.
DESCRIPTION
Titanium tetraisopropanolate is a titanium alkoxide widely used in inorganic and organic synthesis.
Titanium tetraisopropanolate is known for high reactivity toward moisture and alcohols.
Titanium tetraisopropanolate is a key precursor for titanium dioxide and titanium-based coatings.
Titanium tetraisopropanolate has the chemical formula Ti(O-i-Pr)₄.
Titanium tetraisopropanolate has the CAS number 546-68-9.
Titanium tetraisopropanolate has the EC number 208-909-5.
Titanium tetraisopropanolate appears as a clear yellowish to colorless liquid.
Titanium tetraisopropanolate has a characteristic alcohol-like odor.
Titanium tetraisopropanolate is soluble in alcohols and organic solvents.
Titanium tetraisopropanolate hydrolyzes rapidly in the presence of moisture.
Titanium tetraisopropanolate generates titanium-oxide structures upon decomposition.
Titanium tetraisopropanolate must be stored under dry, inert atmosphere conditions.
Titanium tetraisopropanolate is flammable and reacts exothermically with water.
Titanium tetraisopropanolate should be handled using moisture-free equipment and protective gear.
Titanium tetraisopropanolate is essential for sol-gel chemistry, catalysis, photovoltaics, and advanced materials science.
Titanium tetraisopropanolate is a highly reactive titanium alkoxide.
Titanium tetraisopropanolate appears as a clear to pale yellow liquid.
Titanium tetraisopropanolate has a characteristic organic odor.
Titanium tetraisopropanolate hydrolyzes rapidly on contact with moisture.
Titanium tetraisopropanolate forms titanium dioxide upon hydrolysis and condensation.
Titanium tetraisopropanolate requires moisture-controlled handling.
Titanium tetraisopropanolate dissolves in alcohols and many organic solvents.
Titanium tetraisopropanolate is sensitive to air, water, and acidic conditions.
Titanium tetraisopropanolate must be stored in moisture-free sealed systems.
Titanium tetraisopropanolate generates flammable vapors.
Titanium tetraisopropanolate may polymerize into titanium-oxide networks.
Titanium tetraisopropanolate should be handled under inert gas when possible.
PROPERTIES
Appearance: Clear to yellow liquid
Odor: Mild alcohol-like odor
Density: ~0.96 g/cm³
Boiling Point: ~232°C
Flash Point: ~38°C (highly flammable)
Solubility: Reacts with water, miscible with organic solvents
Reactivity: Rapid hydrolysis, forms TiO2
Storage: Airtight container, dry, cool, nitrogen blanketed if possible
FIRST AID
Inhalation:
Move to fresh air and keep warm and calm.
Seek medical attention for respiratory irritation.
Skin Contact:
Wash immediately with plenty of water.
Remove contaminated clothing and seek medical help if irritation persists.
Eye Contact:
Rinse with water for at least 15 minutes.
Seek immediate medical attention due to corrosive potential.
Ingestion:
Rinse mouth and do not induce vomiting.
Seek urgent medical assistance.
Note to Physicians:
Treat exposure to strong alkoxide and hydrolysis products; monitor airway.
HANDLING AND STORAGE
Handling:
Wear chemical-resistant gloves, goggles, and protective clothing.
Handle under dry inert atmosphere when possible.
Ventilation:
Use local exhaust ventilation to reduce vapor accumulation.
Avoidance:
Avoid contact with moisture, acids, heat, sparks, and open flame.
Spill Procedures:
Absorb with dry inert material; keep water away.
Dispose in accordance with chemical waste regulations.
Storage:
Store in tightly sealed containers in a dry, cool location.
Nitrogen blanketing recommended for bulk storage.
Keep away from ignition sources.