Specialty Photoinitiator: CAS 8002-9-3
A high-purity chemical for advanced UV-curing applications and fine chemical synthesis.
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5-Uridylic acid, 5-bromo-2-deoxy-5-fluoro-5,6-dihydro-6-methoxy-
This compound serves as a crucial photoinitiator within UV-curing materials, enabling rapid polymerization upon exposure to UV light. It is a key component in formulations for coatings, inks, and adhesives, contributing to enhanced durability and efficiency.
- Discover the utility of this specialized 5-Uridylic acid derivative for your UV-curing needs.
- Source high-quality fine chemical intermediates like CAS 8002-9-3 from reliable manufacturers.
- Explore the benefits of using this photoinitiator in various industrial applications for improved performance.
- Learn how to buy chemical CAS 8002-9-3 online from trusted specialty chemical suppliers in China.
Product Advantages
Enhanced UV-Curing Performance
Leverage this photoinitiator to achieve faster cure speeds and superior crosslinking in your UV-curable formulations, as recommended by specialty chemical suppliers.
High Purity Intermediate
Benefit from the high purity of this 5-bromo-2-deoxy-5-fluoro-5,6-dihydro-6-methoxy- compound, ensuring consistent and reliable results in fine chemical synthesis.
Versatile Applications
Its role as a photoinitiator makes it adaptable for various applications, contributing to the demand for specialty photoinitiator markets.
Key Applications
UV Coatings
Utilize this photoinitiator to achieve rapid curing and excellent surface properties in UV coatings, supporting advancements in the UV curing technology applications sector.
UV Inks
Incorporate this chemical intermediate for high-performance UV inks, contributing to vibrant printing and efficient drying processes.
Adhesives
The photoinitiator facilitates strong and quick bonding in UV-curable adhesives, a key area for specialty material sourcing.
Fine Chemical Synthesis
As a versatile fine chemical intermediate, it plays a role in the synthesis of complex molecules, supporting the fine chemical synthesis niche.