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Specifications
| Appearance (25°C) | Transparent liquid |
| BPA2PO Content | 30-38% |
| BPA3PO Content | 37-45% |
| BPA4PO Content | 13-20% |
| Acid value | 0.1 mg KOH/g max |
| Colour (APHA) | 100 max |
| Moisture content | 0.08% max |
| Hytorytahe Economic Value | 270-285 mg KOH/g |
Applications
Propoxylated Bisphenol A is widely used as an intermediate in the production of epoxy resins, polyurethanes, and other thermosetting polymers. Its propoxylation provides flexibility and improved compatibility in resin formulations, making it suitable for coatings, adhesives, sealants, and composite materials. It is also employed in the synthesis of polyether polyols, which are key components in flexible and rigid polyurethane foams used in construction, automotive, and furniture industries. Additionally, Propoxylated Bisphenol A serves as a modifier in industrial coatings to enhance toughness, chemical resistance, and impact strength of cured materials. Its chemical versatility allows it to participate in further functionalization for specialty polymers and high-performance materials.
Benefits
The main benefits of Propoxylated Bisphenol A include improved solubility, enhanced flexibility, and superior chemical and thermal resistance in end-use applications. Its propoxylated structure reduces crystallinity, leading to better processability and reduced brittleness in cured resins. The compound contributes to higher durability, adhesion, and resistance to hydrolysis or environmental degradation, making it ideal for high-performance coatings, adhesives, and polymer composites. Moreover, it supports consistent quality and predictable reaction behavior in industrial processes, allowing manufacturers to achieve reproducible material properties. Its compatibility with various polymer systems and adaptability in molecular design further expand its utility in advanced material formulations.
Conclusion
Propoxylated Bisphenol A is a versatile chemical intermediate essential for producing high-performance resins, polyurethanes, and specialty polymers. Its propoxylated structure provides flexibility, chemical resistance, and improved processability, enhancing the performance of coatings, adhesives, foams, and composites. The combination of these properties makes it a reliable and widely used compound in industrial and material science applications, supporting the development of durable and efficient polymer-based products.

