Interesting facts
Interesting Facts about Propan-2-olate Titanium(IV)
Propan-2-olate titanium(IV), also known as titanium isopropoxide, is a fascinating compound with various applications in the fields of chemistry and materials science. Here are some intriguing aspects of this compound:
- Catalytic Properties: Titanium(IV) compounds, including propan-2-olate, are often used as catalysts in organic reactions, particularly in the production of various polymers and industrial processes. This makes them essential in the development of innovative materials.
- Precursor in Thin Film Technology: Propan-2-olate titanium(IV) serves as a precursor for creating titanium dioxide (TiO2) thin films, which are widely used in photocatalysis and as transparent coatings.
- Versatile Solvent Systems: The use of isopropanol as a solvent in synthesizing titanium compounds helps enhance the solubility and reactivity, making it an important component in various chemical reactions.
- Environmental Applications: Due to its properties, titanium dioxide produced from propan-2-olate titanium(IV) has applications in environmental remediation, particularly in breaking down pollutants through photocatalytic processes.
- Quote from the Field: As a pioneer in materials science, one might quip: "In the realm of chemical compounds, titanium is the silent knight, steadfast and strong."
With such a wide array of applications and intrinsic properties, propan-2-olate titanium(IV) continues to be a compound of great interest for researchers and industry professionals alike. Its role in advancing technologies reminds us of the potential locked within chemical compounds, waiting to be explored!
Synonyms
Titanium tetraisopropanolate
546-68-9
Titanium(IV) isopropoxide
Titanium isopropoxide
Tetraisopropyl orthotitanate
Titanium tetraisopropoxide
Titanium isopropylate
Titanium tetraisopropylate
Tilcom TIPT
TETRAISOPROPYL TITANATE
Ti Isopropylate
Isopropyl orthotitanate
Tetraisopropoxytitanium(IV)
Tetraisopropoxytitanium
A 1 (titanate)
Tetraisopropanolatotitanium
Orgatix TA 10
Tetrakis(isopropoxy)titanium
Isopropyl titanate(IV)
Tyzor TPT
Tetraisopropoxide titanium
Titanium tetra-n-propoxide
Titanium isopropylate (VAN)
Titanium, tetrakis(1-methylethoxy)-
Titanium tetrakis(isopropoxide)
HSDB 848
Tetraksi(isopropanolato)titanium
Isopropyl alcohol, titanium salt
Titanic acid tetraisopropyl ester
Isopropyl titanate(IV) ((C3H7O)4Ti)
Titanium(4+) isopropoxide
Titanic acid isopropyl ester
EINECS 208-909-6
Titanium isopropoxide (Ti(OCH7)4)
NSC 60576
Isopropyl alcohol, titanium(4+) salt
Titanic(IV) acid, tetraisopropyl ester
2-Propanol, titanium(4+) salt
2-Propanol, titanium(4+) salt (4:1)
Ti(OiPr)4
76NX7K235Y
Isopropyl alcohol titanium(4+) salt
VERTEC XL 110
TITANUM-(IV)-ISOPROPOXIDE
CHEBI:139496
EC 208-909-6
NSC-60576
TITANIUM TETRAISOPROPOXIDE [MI]
TITANIUM TETRAISOPROPANOLATE [HSDB]
titanium(4+) tetrapropan-2-olate
Titanium isopropoxide (Ti(OC3H7)4)
DTXSID5027196
ti(iv) isopropoxide
2Propanol, titanium(4+) salt
DTXCID007196
Tetrakis(isopropanolato)titanium
titanium tetrakis(iso-propoxide)
Titanium, tetrakis(1methylethoxy)
TETRAKIS(ISOPROPYLOXY)TITANIUM
TETRAKIS(ISOPROPYLATO)TITANIUM(IV)
651-908-4
propan-2-olate;titanium(4+)
Isopropyl Titanate
TTIP
titanium(IV) propan-2-olate
Titanium(IV) Tetraisopropoxide
titanium(4+) tetrakis(propan-2-olate)
titanium tetra(isopropoxide)
TITANIUM (IV) ISOPROPOXIDE
titanium(IV)tetraisopropoxide
C12H28O4Ti
UNII-76NX7K235Y
TIPT
tetraisopropoxy titanium
tetraisopropoxy-titanium
titaniumtetraisopropoxide
titaniumtetraisopropylate
titanium(IV)isopropoxide
tetra-isopropoxy titanium
titanium (IV)isopropoxide
tetra-iso-propoxy titanium
titanium tetra-isopropoxide
titanium-tetra-isopropoxide
titanium (4+) isopropoxide
Titanium isopropoxide(TTIP)
tetraisopropoxytitanium (IV)
titanium tetra (isopropoxide)
titanium (IV)tetraisopropoxide
titanium (IV) tetraisopropoxide
AKOS015892702
FT60923
T0133
Q2031021
Isopropyl Titanate;Tetraisopropyl Titanate;Tetraisopropyl Orthotitanate;TTIP
Solubility of Propan-2-olate Titanium(IV)
The solubility of propan-2-olate titanium(IV) can be described as follows:
As a rule of thumb, "like dissolves like," which implies that polar compounds tend to dissolve well in polar solvents. However, the unique interactions due to the metallic component can complicate this generalization. Always consider the specific conditions and the potential for complex formation when evaluating the solubility of titanium(IV) compounds.
In conclusion, understanding the solubility of propan-2-olate titanium(IV) involves considering a multitude of factors, such as solvent choice, concentration, and environmental conditions, making it a fascinating subject of study in the field of chemistry.