Thioxanthone 492-22-8: Your Trusted Source for High-Quality Pharmaceutical Intermediates and Photoinitiators

Discover the essential applications and high-purity specifications of Thioxanthone (CAS: 492-22-8). As a leading manufacturer and supplier in China, we provide reliable access to this critical compound for your pharmaceutical synthesis and industrial polymerization needs. Explore how our commitment to quality and competitive pricing can benefit your projects.

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Key Advantages of Sourcing Thioxanthone

High Purity & Consistency

We guarantee Thioxanthone with a minimum purity of 97% (HPLC), ensuring reliable performance in your sensitive pharmaceutical synthesis or industrial applications. Trust our manufacturing expertise for consistent product quality.

Competitive Pricing & Availability

As a direct manufacturer and supplier in China, we offer Thioxanthone at competitive prices, catering to bulk orders and ensuring stable supply chains for your ongoing production needs. Inquire for a quote today!

Broad Application Spectrum

From printing inks and UV coatings to the synthesis of critical pharmaceutical drugs and advanced functional materials, Thioxanthone's versatility makes it an invaluable component for diverse R&D and manufacturing processes.

Diverse Applications of Thioxanthone

Industrial Printing & Coatings

Thioxanthone derivatives are essential Type II photoinitiators, crucial for the rapid curing of inks and coatings under UV light, enhancing efficiency in the printing industry.

Pharmaceutical Synthesis

Used as a key intermediate in the development of therapeutic agents, including drugs for treating parasitic infections and certain types of cancer, highlighting its importance in healthcare innovation.

Organic Synthesis Building Block

Serves as a valuable building block in organic chemistry for creating complex molecular structures and functional derivatives, enabling cutting-edge research and product development.

Advanced Materials Development

Its unique structural properties are being explored for new materials with enhanced electronic and optical characteristics, potentially leading to advancements in organic semiconductors and solar cell technologies.