MXC-DPA

Clear light yellow liquid MXC-DPA catalyst in a glass beaker for polyurethane synthesis
Clear light yellow liquid MXC-DPA catalyst in a glass beaker for polyurethane synthesis
Name 1,1-[[3-(Dimethylamino)propyl]imino]bis-2-propanol
Formula C11H26N2O2
CAS No. 63469-23-8
Molecular weight 218.34
Appearance Colorless-to-light yellow clear liquid

MXC-DPA Technical Data Sheet

Flash Point 90°C
Specific Gravity at 25°C 0.95
Boiling Point 212°C
Amine Value 480-550
Water Content Max. 1%
Package 190kgs steel drum
Storage Condition Keep in a cool dry place.
Shelf Life One Year

MXC-DPA Chemical Characteristics

Advanced Reactive Amine for Low-Emission Systems

Clear light yellow liquid MXC-DPA catalyst in a glass beaker for polyurethane synthesis
MXC-DPA is a premium liquid catalyst engineered to accelerate curing in various PU applications.

MXC-DPA is a high-performance reactive tertiary amine catalyst designed to meet the most stringent VOC emission standards in the polyurethane industry:

  • Reactive Hydroxyl Architecture: Unlike traditional catalysts, MXC-DPA contains reactive hydroxyl groups that chemically bond into the PU polymer matrix, ensuring zero migration and permanent low-odor performance.

  • Molecular Precision: With a molecular weight of $218.34$ and a dual-functional structure, it provides a stable, balanced reaction profile that is essential for high-quality molded and flexible foams.

 

Catalytic Efficiency & Foam Performance

Chemical structure of MXC-DPA (CAS 63469-23-8), a low odor reactive amine catalyst for polyurethane foam
Molecular structure of MXC-DPA (CAS 63469-23-8), an excellent reactive amine catalyst for low-emission PU systems.

For production engineers, the unique chemical profile of MXC-DPA translates into superior processing control and end-product quality:

  • Balanced Gelling & Blowing: It offers a versatile catalytic balance that promotes consistent bubble formation and polymer growth, preventing internal foam collapse or density variations.

  • Optimized for RIM & Flexible Foam: The specific reactivity of MXC-DPA makes it the ideal choice for Reaction Injection Molding (RIM) and sophisticated automotive seating applications where structural integrity is paramount.

  • Improved Cell Morphology: By controlling the reaction kinetics, it helps create a more uniform and open-cell structure, enhancing the breathability and comfort of flexible polyether foams.

 

Process Safety & Supply Chain Advantages

We provide transparent technical data to help procurement managers reduce risk and improve manufacturing efficiency:

  • High-Flash Point Safety: With a flash point of 90°C and a boiling point of 212°C, MXC-DPA offers significantly higher thermal stability than volatile alternatives, reducing fire risks in the factory.

  • Miscibility & Easy Handling: The low-viscosity liquid integrates seamlessly with most polyols and additives, ensuring precision dosing and preventing equipment clogs in automated production lines.

  • Guaranteed Low Water Content: Our strict quality control keeps water content below 1%, preventing interference with the isocyanate reaction and ensuring consistent foam density across every batch.

 

 

 

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