Skip to main content
TETRAKIS(DIMETHYLAMINO)TITANIUM CAS#: 3275-24-9
IdentificationPhysical DataSpectraRoute of Synthesis (ROS)Safety and HazardsOther Data

Identification

Product NameTETRAKIS(DIMETHYLAMINO)TITANIUMIUPAC Namedimethylazanide;titanium(4+)  Molecular StructureCAS Registry Number 3275-24-9EINECS Number221-904-3MDL NumberMFCD00014861SynonymsTetrakis(dimethylamino)titanium(IV)Tetrakis(dimethylamino)titanium3275-24-9TDMATTetrakis(dimethylamido)titanium(IV)Methanamine, N-methyl-, titanium(4+) saltMFCD00014861Titanium tetrakis(dimethylammonium)EINECS 221-904-3Methanamine, N-methyl-, titanium(4+) salt (4:1)Ti(NMe2)4SCHEMBL45685C2H7N.1/4TiC2-H7-N.1/4TiNSC130237AKOS015850795?TETRAKIS(DIMETHYLAMINO)TITANIUMNSC-130237Methanamine, N-methyl-, titanium(4) saltD92585Tetrakis(dimethylamido)titanium(IV), technical grade, >=80%Tetrakis(dimethylamido)titanium(IV), 99.999% trace metals basisTetrakis(dimethylamido)titanium(IV), packaged for use in deposition systemsTetrakis(dimethylamino)titanium(IV), 99% TDMAT (99.99%-Ti) PURATREMMolecular FormulaC8H24N4Ti Molecular Weight224.17InChIInChI=1S/4C2H6N.Ti/c4*1-3-2;/h4*1-2H3;/q4*-1;+4  InChI KeyMNWRORMXBIWXCI-UHFFFAOYSA-N  Isomeric SMILESCC.CC.CC.CC.  

Physical Data

AppearanceYellow liquid

Boiling Point, °CPressure (Boiling Point), Torr753690.1110 - 11520500.05

Density, g·cm-3Reference Temperature, °CMeasurement Temperature, °C0.9439420

Spectra

Description (NMR Spectroscopy)NMRSpectrum

Route of Synthesis (ROS)

Route of Synthesis (ROS) of Tetrakis(dimethylamino)titanium CAS 3275-24-9

ConditionsYieldIn tetrahydrofuran at 25℃; for 12h;Experimental Procedure(2) in the glove box, the SalanH 2 (1.57g, 3 . 00mmol) added to the tetrahydrofuran solution of Ti (0.67g, 3 . 00mmol) in tetrahydrofuran solution, the system to change from a light yellow to dark red solution, 25 °C stirring reaction approximately 12h, tetrahydrofuran, add 20 ml hexane extraction two, filtering, supernatant fluid is concentrated, is placed at room temperature until the precipitated red crystal (1.86g), yield 94%.95%In toluene at 20℃; for 12h;90%

Safety and Hazards

Pictogram(s)SignalDangerGHS Hazard StatementsH225 (100%): Highly Flammable liquid and vapor H260 (90.54%): In contact with water releases flammable gases which may ignite spontaneously H302 (36.49%): Harmful if swallowed H314 (100%): Causes severe skin burns and eye damage H331 (29.73%): Toxic if inhaled Precautionary Statement CodesP210, P223, P231+P232, P233, P240, P241, P242, P243, P260, P261, P264, P270, P271, P280, P301+P317, P301+P330+P331, P302+P335+P334, P302+P361+P354, P303+P361+P353, P304+P340, P305+P354+P338, P316, P321, P330, P363, P370+P378, P402+P404, P403+P233, P403+P235, P405, and P501(The corresponding statement to each P-code can be found at the GHS Classification page.)

Other Data

TransportationUnder the room temperature and away from lightHS CodeStorageUnder the room temperature and away from lightShelf Life1 yearMarket Price

DruglikenessLipinski rules componentMolecular Weight224.185logPHBA1HBD0Matching Lipinski Rules3Veber rules componentPolar Surface Area (PSA)0Rotatable Bond (RotB)0Matching Veber Rules2

BioactivityIn vitro: EfficacyQuantitative Results

Toxicity/Safety PharmacologyQuantitative Results

Use PatternTetrakis(dimethylamino)titanium CAS#: 3275-24-9 is commonly used as a precursor material in MOCVD for growing III-V compound semiconductor materials like gallium nitride (GaN) and gallium arsenide (GaAs). These materials are essential for the fabrication of optoelectronic devices such as laser diodes and photodetectors.
https://www.chemwhat.com/tetrakisdimethylaminotitanium-cas-3275-24-9/

Comments

Popular posts from this blog

BCB (Benzocyclobutene): — Watson International Enables the Transition from Concept to Scalable Application

Benzocyclobutene (BCB) is an organic compound with a rigid molecular structure composed of a conjugated benzene ring and a four-membered ring. Its excellent thermal stability and electrical properties have made it a highly promising candidate for next-generation electronic materials. Historically, its industrial adoption has been constrained by high production costs, complex purification processes, and limited output. However, with growing demand in high-end applications and recent advances in upstream technology, BCB is now poised for industrial-scale deployment. Material Properties and Structural Advantages BCB (C₈H₈) is a non-polar molecule, free of ester, carboxyl, or amide groups, giving it excellent dielectric properties and low moisture absorption. Its dielectric constant (Dk) and dissipation factor (Df) remain stable across wide temperature and frequency ranges—key metrics for ensuring signal integrity in high-frequency, high-speed communication systems. Unlike conventional m...

BCB (Benzocyclobutene): — Watson International Enables the Transition from Concept to Scalable Application

Despite BCB’s well-established performance advantages, its commercialization has long been hindered by production cost and scalability challenges. Watson International has made critical breakthroughs in BCB industrialization through integrated innovation in synthesis, purification, and material formulation: Cost Reduction: By optimizing synthetic pathways and improving by-product recovery, Watson has significantly reduced the unit production cost of BCB, enabling cost-effective scaling; High Purity Production: Advanced purification and process control technologies ensure high-purity BCB under mass-production conditions—meeting stringent requirements from high-end electronic manufacturers; Versatile Co-polymerization: Watson’s BCB materials are compatible with other advanced resins such as BMI and PPO, allowing for custom co-polymer design and performance tuning.

The World's Largest Producer of Squaric Acid Emerges: Watson Leads the Way

In a groundbreaking development for the chemical industry, Watson has officially claimed the title of the world’s largest producer of squaric acid. This achievement marks a significant milestone, positioning the company as a global leader in the production of this highly versatile compound, widely valued in pharmaceuticals, polymer research, and advanced materials. What is Squaric Acid? Squaric acid, also known as quadratic acid, is a four-carbon cyclic diketone with two ketone groups and two hydroxyl groups arranged symmetrically. It is renowned for its stability and strong acidity, making it a unique compound in both organic and inorganic chemistry. Its derivatives find applications in creating advanced coatings, conductive polymers, and as intermediates in drug synthesis. Watson: Redefining Excellence in Squaric Acid Production Watson’s rise to the top of the squaric acid industry is backed by its unmatched production capacity, cutting-edge technology, and unwavering commitment...