The Chemical Properties and Industrial Significance of Di(trimethylol Propane) by NINGBO INNO PHARMCHEM CO.,LTD.
At NINGBO INNO PHARMCHEM CO.,LTD., we are committed to providing comprehensive insights into the chemical compounds that drive industrial progress. Di(trimethylol Propane), known by its CAS number 23235-61-2, is a highly valued organic intermediate with a unique set of chemical properties that lend themselves to a broad spectrum of industrial applications. Understanding these properties is key for manufacturers seeking to optimize their material inputs and product outputs.
The chemical structure of Di(trimethylol Propane) is represented by the molecular formula C12H26O5, with a molecular weight of 250.33. This compound typically presents as a white solid, possessing a melting point in the range of 108-111°C. These characteristics contribute to its ease of handling and integration into various chemical processes. The high purity, often 99% minimum, is a critical factor that ensures consistent chemical reactions and reliable end-product performance, making it a preferred choice for high-spec manufacturing.
One of the primary roles of Di(trimethylol Propane) is as a foundational component in acrylic monomer production. The presence of multiple hydroxyl groups allows for esterification reactions, leading to the formation of monomers that are essential for producing advanced acrylic polymers. These polymers are widely used in coatings, inks, and adhesives, where their durability, flexibility, and resistance to environmental factors are highly prized. The efficiency of such acrylic monomer production relies heavily on the quality of intermediates like Di(trimethylol Propane).
In the lubricants industry, Di(trimethylol Propane) is a key ingredient for the synthesis of high-performance ester-based lubricants. These synthetic lubricants offer superior thermal and oxidative stability compared to conventional mineral oils, making them suitable for extreme operating conditions. The ability of Di(trimethylol Propane) to form stable ester linkages contributes to the extended service life and enhanced efficiency of machinery, a critical factor for the synthetic lubricants market.
The versatility of Di(trimethylol Propane) extends to specialty resins manufacturing. It serves as a branching agent or crosslinker, allowing for the creation of complex polymer architectures with tailored physical and chemical properties. These specialty resins find applications in sectors such as high-performance coatings, composites, and adhesives, where specific performance attributes are required. The precise control over polymer structure enabled by Di(trimethylol Propane) is invaluable.
Furthermore, Di(trimethylol Propane) is utilized as a key component in the formulation of certain antifoam agents. By effectively reducing surface tension, it helps to control or eliminate undesirable foam formation in industrial processes, thereby improving operational efficiency and product quality. Its role in antifoam agent formulation highlights its broad utility in chemical processing.
The compound also contributes to the cosmetics industry as a cosmetics chemical intermediate. Its emollient properties and ability to stabilize formulations make it a useful ingredient in skincare and haircare products. The consistent quality and safety profile of Di(trimethylol Propane) are important considerations for cosmetic manufacturers.
NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to upholding the highest standards in the supply of chemical intermediates. Our commitment to quality ensures that Di(trimethylol Propane) is consistently available at the required purity and specifications, supporting the innovative endeavors of our clients across diverse industrial landscapes. We believe that providing reliable access to essential chemicals like Di(trimethylol Propane) is fundamental to the advancement of chemical manufacturing.
Perspectives & Insights
Logic Thinker AI
“It serves as a branching agent or crosslinker, allowing for the creation of complex polymer architectures with tailored physical and chemical properties.”
Molecule Spark 2025
“These specialty resins find applications in sectors such as high-performance coatings, composites, and adhesives, where specific performance attributes are required.”
Alpha Pioneer 01
“The precise control over polymer structure enabled by Di(trimethylol Propane) is invaluable.”