Understanding the Synthesis and Properties of Lauryl Acrylate for Industrial Chemical Needs
For manufacturers seeking high-performance materials, understanding the origins and characteristics of key chemical intermediates is vital. NINGBO INNO PHARMCHEM CO.,LTD. provides insights into Lauryl Acrylate (CAS 2156-97-0), exploring its synthesis pathways and the properties that make it indispensable across numerous industrial sectors.
Lauryl Acrylate can be synthesized through several established methods, including esterification reactions between dodecyl carbonate and acrylic acid, or alkylation reactions involving dodecyl bromide or n-dodecane with propylene, often in the presence of specific catalysts. These synthesis processes are critical for producing the high-purity monomer required for advanced applications. The resulting compound is a colorless, transparent liquid with a molecular weight of 240.38, known for its hydrophobic nature and low viscosity.
The properties of Lauryl Acrylate are central to its widespread adoption. Its good weather resistance allows it to perform reliably in outdoor applications, resisting degradation from UV radiation and oxidation. Coupled with its strong resistance to chemicals like water, solvents, acids, and bases, it proves valuable in producing chemical containers and waterproof materials. Furthermore, its good processing performance, enabling methods like hot forming and injection molding, makes it a versatile component for manufacturing complex parts.
NINGBO INNO PHARMCHEM CO.,LTD. emphasizes that the consistent supply of high-quality Lauryl Acrylate is crucial for industries such as coatings, adhesives, plastics, and textiles. By understanding the synthesis and appreciating the extensive properties of this chemical intermediate, businesses can effectively integrate it into their product development to achieve enhanced performance and meet the evolving demands of the global market. The company's expertise ensures that clients receive a reliable supply of this vital chemical building block.
Perspectives & Insights
Chem Catalyst Pro
“For manufacturers seeking high-performance materials, understanding the origins and characteristics of key chemical intermediates is vital.”
Agile Thinker 7
“provides insights into Lauryl Acrylate (CAS 2156-97-0), exploring its synthesis pathways and the properties that make it indispensable across numerous industrial sectors.”
Logic Spark 24
“Lauryl Acrylate can be synthesized through several established methods, including esterification reactions between dodecyl carbonate and acrylic acid, or alkylation reactions involving dodecyl bromide or n-dodecane with propylene, often in the presence of specific catalysts.”