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Catalog Number:
41288
CAS Number:
3087-36-3
Tetraethyl orthotitanate (contains 35% Tetraisopropyl orthotitanate at maximum)
Synonym(s):
Tetraethyl titanate (contains 35% Tetraisopropyl orthotitanate at maximum), Titanium(IV) ethoxide (contains 35% Tetraisopropyl orthotitanate at maximum)
Hazmat
Documents
$20.63 /25ML
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Product Information
Synonyms
Tetraethyl titanate (contains 35% Tetraisopropyl orthotitanate at maximum), Titanium(IV) ethoxide (contains 35% Tetraisopropyl orthotitanate at maximum)
CAS Number
3087-36-3
Molecular Formula
C8H20O4Ti
Molecular Weight
0
MDL Number
MFCD00009071
PubChem ID
76524
Melting Point
-40 °C (Lit.)
Density
1.09 g/mL
Appearance
Colorless to light yellow liquid
Boiling Point
236 °C (Lit.)
Refractive Index
n20D 1.50
Conditions
Store at RT
General Information
Synonyms
Tetraethyl titanate (contains 35% Tetraisopropyl orthotitanate at maximum), Titanium(IV) ethoxide (contains 35% Tetraisopropyl orthotitanate at maximum)
CAS Number
3087-36-3
Molecular Formula
C8H20O4Ti
Molecular Weight
0
MDL Number
MFCD00009071
PubChem ID
76524
Melting Point
-40 °C (Lit.)
Density
1.09 g/mL
Appearance
Colorless to light yellow liquid
Boiling Point
236 °C (Lit.)
Refractive Index
n20D 1.50
Conditions
Store at RT
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Yes
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Tetraethyl orthotitanate is widely utilized in research focused on various applications:

  • Coatings and Thin Films: This compound is used in the production of titanium oxide coatings, which are valued for their durability and resistance to corrosion. Industries such as automotive and aerospace benefit from these protective layers.
  • Catalysis: Tetraethyl orthotitanate serves as a catalyst in organic synthesis, enhancing reaction rates and selectivity. This is particularly useful in the pharmaceutical industry for the development of complex molecules.
  • Nanotechnology: In the field of nanomaterials, it is employed to create titanium-based nanoparticles, which have applications in electronics and environmental remediation due to their unique properties.
  • Biomedical Applications: The compound is explored for its potential in drug delivery systems and as a biocompatible material in implants, offering advantages in terms of integration with biological tissues.
  • Optical Devices: Tetraethyl orthotitanate is used in the fabrication of optical coatings for lenses and mirrors, enhancing their performance in various optical applications, including lasers and imaging systems.

Citations