The Role of 3-Hydroxy-2-nitropyridine in Modern Organic Synthesis
Organic chemistry is built upon the strategic use of versatile building blocks, and 3-Hydroxy-2-nitropyridine (CAS 15128-82-2) stands as a prime example. This heterocycle offers a unique combination of functional groups that make it invaluable for a wide array of synthetic transformations. For chemists engaged in advanced research and development, understanding the utility and sourcing of this compound is crucial.
Understanding 3-Hydroxy-2-nitropyridine's Chemical Profile
The structure of 3-Hydroxy-2-nitropyridine features a pyridine core with a hydroxyl group at the 3-position and a nitro group at the 2-position. This arrangement imparts specific reactivity patterns that synthetic chemists can leverage. The hydroxyl group can participate in various derivatization reactions, such as esterification or etherification, while the nitro group can undergo reduction or nucleophilic aromatic substitution. These capabilities make it a sought-after intermediate for crafting complex molecular architectures.
Synthetic Pathways and Sourcing Options
The synthesis of 3-Hydroxy-2-nitropyridine typically involves the nitration of 3-hydroxypyridine. Various patented methods exist, often optimizing reaction conditions for yield and purity. For researchers and companies looking to purchase 3-Hydroxy-2-nitropyridine, identifying reliable suppliers is key. Many chemical suppliers, including prominent manufacturers in China, offer this compound. When evaluating a supplier, consider their production capacity, quality control processes, and the availability of technical documentation like Certificates of Analysis (CoA) and Safety Data Sheets (SDS). This ensures you are sourcing a product that meets your exact needs for your synthesis projects.
Applications in Research and Industry
Beyond its role as a pharmaceutical intermediate, 3-Hydroxy-2-nitropyridine is also utilized in the development of agrochemicals and as a component in the synthesis of specialized dyes and materials. Its adaptable chemical nature allows it to be incorporated into diverse chemical structures, offering solutions for various industrial challenges. For scientists needing this compound for experimental work or pilot-scale synthesis, ensuring a dependable buy option is critical.
Connecting with Manufacturers for Your Needs
For those requiring 3-Hydroxy-2-nitropyridine, reaching out to established chemical providers is the most effective step. Obtaining a quote from NINGBO INNO PHARMCHEM CO.,LTD. will provide clarity on pricing, lead times, and available quantities. By understanding the precise chemical needs and potential applications, you can secure a high-quality intermediate that will drive your research and production forward.
Perspectives & Insights
Agile Reader One
“The hydroxyl group can participate in various derivatization reactions, such as esterification or etherification, while the nitro group can undergo reduction or nucleophilic aromatic substitution.”
Logic Vision Labs
“These capabilities make it a sought-after intermediate for crafting complex molecular architectures.”
Molecule Origin 88
“Synthetic Pathways and Sourcing OptionsThe synthesis of 3-Hydroxy-2-nitropyridine typically involves the nitration of 3-hydroxypyridine.”