Sourcing High-Purity 1-(2-Aminophenyl)ethanone: A Guide for Pharmaceutical Buyers
For procurement managers and R&D scientists in the pharmaceutical sector, securing high-quality raw materials is paramount. 1-(2-Aminophenyl)ethanone, identified by CAS number 551-93-9, stands out as a crucial intermediate in the synthesis of Active Pharmaceutical Ingredients (APIs) and other complex organic molecules. Understanding its properties and how to source it effectively can significantly impact your project's success and your company's bottom line.
Understanding 1-(2-Aminophenyl)ethanone's Role in Synthesis
1-(2-Aminophenyl)ethanone, also known by synonyms such as 2-aminoacetophenone, is characterized by its unique molecular structure combining an amine group and a ketone group on an aromatic ring. This bifunctional nature makes it an exceptionally versatile building block in organic synthesis. Pharmaceutical researchers frequently utilize this compound to construct intricate molecular architectures, essential for developing new therapeutic agents. Its reactivity allows for a wide range of transformations, including cyclization reactions, amide formations, and Schiff base condensations, all of which are fundamental in drug discovery and development pathways. When you plan to buy this chemical, ensuring its consistent purity is key to reproducible results in your synthesis processes.
Key Considerations When Purchasing 1-(2-Aminophenyl)ethanone
When sourcing 1-(2-Aminophenyl)ethanone, several factors must be critically evaluated. Firstly, purity is non-negotiable. Impurities can lead to side reactions, reduced yields, and difficulties in downstream purification, ultimately impacting the efficacy and safety of the final pharmaceutical product. Look for suppliers who can provide detailed Certificates of Analysis (CoA) that specify the assay, impurity profile, and relevant physical properties like appearance and refractive index. Secondly, the origin of the material matters. Partnering with a reputable manufacturer in China can offer significant advantages, including cost-effectiveness and access to large-scale production capabilities. However, it is vital to vet these suppliers thoroughly to ensure they meet international quality standards and have robust quality control systems in place.
Finding a Reliable Supplier and Obtaining a Quote
Identifying a trustworthy supplier of 1-(2-Aminophenyl)ethanone involves diligent research. Look for manufacturers with established reputations, transparent communication channels, and a proven track record in supplying the pharmaceutical industry. Online platforms that connect buyers with verified manufacturers are excellent starting points. When you find potential suppliers, requesting a detailed quotation is the next logical step. A good supplier will provide competitive pricing, clear lead times, and information on their shipping and handling capabilities. For those looking to buy, engaging with a manufacturer directly often yields better pricing and allows for direct technical consultation, ensuring you receive the exact specification you need for your applications.
Conclusion: Securing Your Supply Chain
In conclusion, 1-(2-Aminophenyl)ethanone is an indispensable compound for pharmaceutical research and manufacturing. By prioritizing purity, understanding the benefits of sourcing from established manufacturers, and proactively seeking quotes from reliable suppliers, procurement professionals and scientists can ensure a stable and high-quality supply of this vital chemical. Leveraging the expertise of chemical manufacturers in China can provide a strategic advantage in managing costs and ensuring the continuity of your critical projects.
Perspectives & Insights
Quantum Pioneer 24
“This bifunctional nature makes it an exceptionally versatile building block in organic synthesis.”
Bio Explorer X
“Pharmaceutical researchers frequently utilize this compound to construct intricate molecular architectures, essential for developing new therapeutic agents.”
Nano Catalyst AI
“Its reactivity allows for a wide range of transformations, including cyclization reactions, amide formations, and Schiff base condensations, all of which are fundamental in drug discovery and development pathways.”