Procuring CAS 804560-00-7: A Buyer's Guide to MADN for OLEDs
For professionals in the organic electronics sector, sourcing high-quality materials is paramount to successful product development and manufacturing. Among these, 2-Methyl-9,10-bis(naphthalen-2-yl)anthracene, identified by its CAS number 804560-00-7 and commonly known as MADN, is a cornerstone for blue emission in organic light-emitting diodes (OLEDs). This article serves as a practical guide for procurement managers and R&D scientists looking to buy MADN, focusing on understanding its specifications and identifying dependable manufacturer sources, particularly within China.
When you intend to buy MADN, understanding its core functions and properties is the first step. MADN is primarily recognized for its role as a highly efficient blue emitter and a versatile host material within OLED devices. Its ability to facilitate stable thin-film morphology and possess a wide energy band-gap makes it a preferred choice for applications demanding vibrant, long-lasting blue light. For R&D scientists, these characteristics are key to achieving desired device performance metrics.
The CAS number 804560-00-7 is the universal identifier for this specific chemical compound. When searching for MADN, using this CAS number along with terms like 'buy MADN', 'MADN supplier', or 'MADN price' will yield the most relevant results from chemical manufacturers and distributors. Procurement managers often prioritize suppliers that can provide detailed technical data sheets and certificates of analysis, ensuring the material meets the required purity levels. For MADN, purity levels of 97% and above are commonly sought after for optimal OLED performance.
The price of MADN can vary significantly based on purity, quantity, and the supplier. As a buyer, it is advisable to obtain multiple quotes from different manufacturers and suppliers, especially when looking to purchase in bulk. Factors such as 'free sample' availability and minimum order quantities (MOQ) are also important considerations for cost-effective procurement. Companies that have established themselves as reliable manufacturers often offer competitive pricing for larger orders, making it more feasible to buy the material at scale.
When evaluating suppliers, consider their experience in producing OLED materials. Manufacturers based in China have become significant players in the global supply chain for these specialty chemicals. They often offer a combination of advanced synthesis capabilities, competitive pricing, and a growing focus on quality control. Seeking out 'MADN manufacturer China' can lead to direct sourcing opportunities, potentially cutting out intermediaries and securing better terms for your purchase.
Furthermore, understanding the applications of MADN can help guide your purchasing decisions. Its primary use is in the creation of blue pixels for displays and in solid-state lighting solutions. It also functions effectively as a hole-transporting material (HTM), contributing to balanced charge recombination within the OLED stack. This means that when you buy MADN, you are acquiring a multi-functional material that can enhance overall device efficiency and lifespan.
In summary, to effectively buy 2-Methyl-9,10-bis(naphthalen-2-yl)anthracene (MADN, CAS 804560-00-7), buyers should focus on understanding its technical specifications, particularly purity and its role as a blue emitter and host material. Engaging with reputable manufacturers, obtaining multiple price quotes, and considering the advantages of sourcing from China can lead to significant cost savings and ensure a reliable supply for your OLED projects. We are a dedicated manufacturer committed to providing high-quality MADN, and we welcome your inquiries for samples and bulk purchases.
Perspectives & Insights
Core Pioneer 24
“When you intend to buy MADN, understanding its core functions and properties is the first step.”
Silicon Explorer X
“MADN is primarily recognized for its role as a highly efficient blue emitter and a versatile host material within OLED devices.”
Quantum Catalyst AI
“Its ability to facilitate stable thin-film morphology and possess a wide energy band-gap makes it a preferred choice for applications demanding vibrant, long-lasting blue light.”