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titanium tetraisopropanolate cas 546-68-9

Product Name: Titanium tetraisopropanolate

CAS: 546-68-9

Molecular Formula: C12H28O4Ti

Molecular Weight: 284.22

Appearance: Colorless to pale yellow liquid



Titaniumtetraisopropanolate Quick Details

Product Name: Titaniumtetraisopropanolate

CAS: 546-68-9

Molecular Formula: C12H28O4Ti

Molecular Weight: 284.22

Appearance: Colorless to pale yellow liquid

TitaniumtetraisopropanolateTypical Properties

Item Specifications Results
Appearance Colorless to yellowish clear liquid Eligibility
Cont of TiO2(%) 27.8~28.4 28.07
Cont of Ti(%) 16.67~17.03 16.83
Density(g/cm3) 0.955~0.965 0.956
Freezing Point(℃) ≥17 17.9
Refractive Index 1.4670~1.4690 1.4673
Cl(ppm) ≤50 21
Color APHA50MAX 25
Viscosity(25℃) 2-5 5
Conclusion The results conforms with enterprisestandards


Isopropyl Titanate(TIPT) is a type of very lively primary alcohol titanium oxide; it hydrolyzes when contacted with moisture in air. TIPT is mainly used as catalyst in esterification reaction or transesterification,also being used as catalyst of polyolefin. It can be used to improve the adherence and crosslinking of resin having alcohol group or carboxyl group, used in heat resistant and corrosion resistant coating. It also can be used in the manufacture of glass and glass fiber.


(1). Exchange Reaction for Esters

(2). Used as additives and intermediates in chemical products

(3). Used to make adhesives and as catalysts for transesterification and polymerization

(4). It can be used to prepare adhesives for metal and rubber, metal and plastics, catalysts for transesterification and polymerization, and raw materials for pharmaceutical industry.

(5). It is mainly used as catalyst for transesterification and condensation in organic synthesis. It is often used as precursor to prepare titanium dioxide (titanium dioxide). A new type of metal oxide / phosphonate hybrids can be formed from four isopropanol titanium by sol-gel two step process. Raw materials for barium strontium titanate thin films. Porous titanium silicate is a potential ion exchange material for the removal of radioactive waste. Photoinduced electron transfer has been demonstrated to occur in heterogeneous supramolecules consisting of nanocrystalline titanium dioxide and viologen electron acceptor complexes.



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