High-Purity 1,2-Diphenoxyethane for Superior Thermal Paper Performance
Enhance your thermal paper with intense black images and exceptional stability using our premium sensitizer.
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1,2-Diphenoxyethane
Our 1,2-Diphenoxyethane (CAS 104-66-5) is a high-purity chemical intermediate, specifically engineered as a sensitizer for thermal paper. It plays a critical role in achieving intense black images with excellent long-term stability and remarkable thermal sensitivity, making it an ideal choice for advanced printing applications.
- Discover the benefits of using a 1,2-Diphenoxyethane thermal paper sensitizer for improved print quality.
- Leverage the high purity of CAS 104-66-5 to ensure consistent performance in your thermal paper formulations.
- Achieve superior thermal paper image stability and vibrant black prints with our advanced chemical intermediate.
- Explore the applications of 1,2-Diphenoxyethane as a key component in paper coating for enhanced functionality.
Key Advantages
Exceptional Image Quality
The high thermal sensitivity provided by 1,2-Diphenoxyethane ensures crisp, dark images on your thermal paper, enhancing readability and visual appeal.
Superior Image Stability
Benefit from excellent image stability, meaning your printed content resists fading and degradation over time, ensuring longevity and reliability.
High Purity Formulation
With a purity of 99% and a melting point of 94-96°C, our 1,2-Diphenoxyethane delivers consistent and predictable results in your thermal paper coating processes.
Key Applications
Thermal Paper Coating
Used as a primary sensitizer to improve the thermal sensitivity and image quality of various grades of thermal paper.
Chemical Intermediates
Serves as a vital intermediate in the synthesis of other chemical substances, particularly within the fine chemical sector.
Heat-Sensitive Materials
Enhances the performance of new types of heat-sensitive materials by improving their sensitivity and response to heat.
Paper Manufacturing Auxiliaries
Acts as an auxiliary in the paper-making industry to boost overall paper performance and print receptivity.