Sourcing 3-Bromo-5-fluoropyridine-2-carbonitrile: A Guide for Buyers
For procurement managers and R&D scientists in the chemical and pharmaceutical sectors, identifying reliable sources for specialty intermediates is paramount. This guide focuses on 3-Bromo-5-fluoropyridine-2-carbonitrile (CAS: 950670-18-5), a crucial heterocyclic building block, offering insights into its properties and where to efficiently buy it.
Understanding 3-Bromo-5-fluoropyridine-2-carbonitrile
3-Bromo-5-fluoropyridine-2-carbonitrile is a valuable compound characterized by its pyridine ring substituted with bromine, fluorine, and a nitrile group. Its molecular formula is C6H2BrFN2, with a molecular weight of approximately 201.00 g/mol. Typically appearing as a solid, this intermediate serves as a versatile starting material in various complex organic synthesis pathways. Its unique chemical structure makes it particularly useful in the development of pharmaceuticals and agrochemicals, where precise molecular engineering is key to achieving desired biological activities.
Why is this Compound Important?
The significance of 3-Bromo-5-fluoropyridine-2-carbonitrile lies in its role as a key intermediate. The presence of bromine and fluorine atoms, along with the nitrile group on the pyridine core, provides multiple reactive sites for further chemical transformations. This allows chemists to introduce diverse functionalities and build complex molecular architectures required for novel drug candidates, advanced materials, or specialized agrochemical products. For example, when searching for 'pharmaceutical intermediate sourcing', this compound often appears as a vital component.
Key Considerations When Buying
When looking to purchase 3-Bromo-5-fluoropyridine-2-carbonitrile, several factors are crucial for ensuring a successful procurement:
- Purity Levels: For synthesis applications, particularly in the pharmaceutical industry, high purity is non-negotiable. Look for suppliers that provide detailed Certificates of Analysis (CoA) confirming purity, typically 97% or higher.
- Supplier Reliability: Partnering with a reputable manufacturer or supplier, especially one with a strong presence in China, can guarantee product quality, consistent supply, and competitive pricing. Verifying supplier credentials and experience is essential.
- Quantity and Packaging: Availability in various quantities, from grams for R&D to kilograms or metric tons for bulk production, is important. Appropriate packaging ensures the compound's stability during transit and storage.
- Technical Support: A good supplier will offer technical support, assisting with product specifications, safety data sheets (SDS), and potential applications.
Finding a Trusted Supplier
Navigating the global chemical market can be challenging. When you search for '3-Bromo-5-fluoropyridine-2-carbonitrile supplier China', you'll find various options. Prioritize suppliers like NINGBO INNO PHARMCHEM CO.,LTD. that emphasize quality control, transparent communication, and a commitment to customer satisfaction. By choosing a dependable partner, you can streamline your procurement process and focus on your research and development objectives. For those seeking to inquire about price or request a sample, reaching out to established manufacturers is the most effective approach.
In conclusion, 3-Bromo-5-fluoropyridine-2-carbonitrile is a critical building block for innovative chemistry. By understanding its properties and carefully selecting a reliable manufacturer and supplier, businesses can effectively secure the materials needed for their next breakthrough.
Perspectives & Insights
Nano Explorer 01
“Understanding 3-Bromo-5-fluoropyridine-2-carbonitrile 3-Bromo-5-fluoropyridine-2-carbonitrile is a valuable compound characterized by its pyridine ring substituted with bromine, fluorine, and a nitrile group.”
Data Catalyst One
“Typically appearing as a solid, this intermediate serves as a versatile starting material in various complex organic synthesis pathways.”
Chem Thinker Labs
“Its unique chemical structure makes it particularly useful in the development of pharmaceuticals and agrochemicals, where precise molecular engineering is key to achieving desired biological activities.”