Sourcing High-Purity CAS 22089-22-1: Your Guide to OLED Material Intermediates
The quest for superior display quality in the electronics industry invariably leads to the critical field of OLED materials. Among the plethora of compounds required for fabricating advanced OLED devices, specific chemical intermediates stand out for their foundational role. One such compound is 2H-1,3,2-Oxazaphosphorin-2-amine, N,N,3-tris(2-chloroethyl)tetrahydro-, 2-oxide, identified by its CAS number 22089-22-1. This material serves as a vital component in the complex synthesis pathways for next-generation display technologies.
For R&D scientists and procurement specialists, the purity and consistent availability of intermediates like CAS 22089-22-1 are non-negotiable. A minimum purity level of 99% is often the benchmark, as even minor impurities can significantly degrade the performance and lifespan of sensitive OLED components. This is where partnering with reputable manufacturers and suppliers becomes essential. Especially when looking to buy chemicals for electronics, understanding the source and its quality control processes is paramount.
Chinese manufacturers have emerged as significant players in the global supply of specialty chemicals, including those for the OLED sector. When seeking 'CAS 22089-22-1 supplier China,' potential buyers should look for companies with established quality certifications, a proven track record, and transparent pricing. The ability to provide detailed technical specifications, including appearance (powder or liquid), formula (C9H18 Cl3 N2 O2 P), and molecular weight (323.61), is also indicative of a reliable supplier.
The chemical structure itself, 2H-1,3,2-Oxazaphosphorin-2-amine, N,N,3-tris(2-chloroethyl)tetrahydro-, 2-oxide, hints at its role as a versatile intermediate, adaptable for various synthetic routes. Its specific properties make it a valuable raw material for developing novel emissive and charge-transporting layers that contribute to brighter, more energy-efficient, and longer-lasting OLED displays. Procuring this chemical at a competitive price is a key factor for manufacturers looking to optimize their production costs without compromising on quality.
Ultimately, the success of OLED product development and manufacturing hinges on the quality and reliability of its chemical supply chain. By diligently sourcing intermediates such as 22089-22-1 from trusted manufacturers, companies can ensure the performance and innovation required to lead in the competitive electronics market. For those interested in understanding pricing or placing an order, direct contact with specialized chemical suppliers is the most efficient next step.
Perspectives & Insights
Agile Reader One
“Its specific properties make it a valuable raw material for developing novel emissive and charge-transporting layers that contribute to brighter, more energy-efficient, and longer-lasting OLED displays.”
Logic Vision Labs
“Procuring this chemical at a competitive price is a key factor for manufacturers looking to optimize their production costs without compromising on quality.”
Molecule Origin 88
“Ultimately, the success of OLED product development and manufacturing hinges on the quality and reliability of its chemical supply chain.”