Sourcing High-Purity 1-Propanone,1-(2,4-dihydroxyphenyl)-3-(4-hydroxyphenyl)- CAS 23130-26-9
For professionals in the chemical and electronics industries, the meticulous sourcing of raw materials is fundamental to product success. When it comes to advanced technologies like Organic Light-Emitting Diodes (OLEDs), the purity and quality of chemical intermediates directly impact performance and reliability. This guide focuses on 1-Propanone,1-(2,4-dihydroxyphenyl)-3-(4-hydroxyphenyl)-, identified by CAS 23130-26-9, a critical component in OLED material synthesis, and outlines the considerations for procurement managers and R&D scientists.
The Chemical Profile of CAS 23130-26-9
1-Propanone,1-(2,4-dihydroxyphenyl)-3-(4-hydroxyphenyl)- is an organic compound with the molecular formula C15H14 O4 and a molecular weight of 258.27. It is typically supplied with a high purity level, often specified at 99%, making it suitable for demanding applications in electronics. The compound can present as either a powder or a liquid, offering flexibility in manufacturing processes. Its significance lies in its role as an intermediate, a precursor that is transformed into more complex molecules used in the final OLED devices, such as emissive or charge-transport layers.
Why is Purity Crucial for OLED Intermediates?
The performance characteristics of OLED displays—brightness, color purity, energy efficiency, and operational lifespan—are highly sensitive to the purity of the constituent materials. Even trace impurities in intermediates like CAS 23130-26-9 can lead to:
- Reduced device efficiency.
- Accelerated degradation of the organic layers.
- Color shifts over time.
- Decreased overall device lifetime.
Therefore, any buyer or research scientist seeking to purchase this chemical must prioritize suppliers who guarantee stringent purity standards and robust quality control measures. When you buy from a reputable manufacturer, you are investing in the quality and consistency of your end products.
The Advantages of Partnering with China-Based Suppliers
NINGBO INNO PHARMCHEM CO.,LTD., a prominent chemical supplier based in China, offers a reliable source for 1-Propanone,1-(2,4-dihydroxyphenyl)-3-(4-hydroxyphenyl)-. By choosing a China-based supplier, businesses can benefit from:
- Competitive Pricing: Access high-quality intermediates at advantageous price points, crucial for cost management in large-scale production.
- Manufacturing Expertise: Leverage the extensive experience of Chinese chemical manufacturers in advanced synthesis and purification techniques.
- Supply Chain Stability: Benefit from a consistent and stable supply chain, ensuring your project timelines are met without interruption.
- Efficient Logistics: Experienced export companies streamline the process of shipping chemicals globally, ensuring timely delivery.
Key Considerations for Your Inquiry
When contacting a supplier to inquire about CAS 23130-26-9, clearly state your requirements. Providing details such as the quantity needed, desired purity, and intended application will help the supplier offer the most suitable product and pricing. For product formulators and R&D teams, understanding how to integrate this intermediate into your synthesis pathway is also key. Obtaining a sample for testing is highly recommended to confirm it meets your precise specifications before placing a larger order.
Investing in high-quality chemical intermediates is an investment in the future of your technology. By partnering with experienced suppliers like NINGBO INNO PHARMCHEM CO.,LTD., you can ensure the success of your OLED development and manufacturing.
Perspectives & Insights
Core Pioneer 24
“Key Considerations for Your Inquiry When contacting a supplier to inquire about CAS 23130-26-9, clearly state your requirements.”
Silicon Explorer X
“Providing details such as the quantity needed, desired purity, and intended application will help the supplier offer the most suitable product and pricing.”
Quantum Catalyst AI
“For product formulators and R&D teams, understanding how to integrate this intermediate into your synthesis pathway is also key.”