Unlock Innovation: The Role of 4-Methoxy-3-nitrobiphenyl in Modern Chemistry
In the dynamic world of chemical synthesis, certain compounds emerge as pivotal building blocks, enabling advancements across various industries. 4-Methoxy-3-nitrobiphenyl (CAS 15854-73-6) is one such versatile molecule, playing a significant role in pharmaceuticals, cosmetics, and diagnostic reagents. For research scientists and formulation chemists, understanding its properties and applications is crucial for driving innovation.
Chemical Profile of 4-Methoxy-3-nitrobiphenyl
This compound, also known by its synonyms like 3-Nitro-4-methoxybiphenyl, is typically presented as a fine white powder. Its chemical formula is C13H11NO3, with a molecular weight of 229.23. A key characteristic is its purity, often specified at 98%, which is critical for sensitive applications where impurities can compromise results. Its relatively high boiling point (383.5°C at 760 mmHg) indicates thermal stability, making it suitable for processes requiring elevated temperatures.
Applications Driving Scientific Progress
The utility of 4-Methoxy-3-nitrobiphenyl spans several critical sectors:
- Pharmaceutical Intermediates: As a pharmaceutical intermediate, this compound is instrumental in the multi-step synthesis of Active Pharmaceutical Ingredients (APIs). Its specific structural features allow for targeted chemical modifications, leading to the creation of new therapeutic agents. Companies looking to buy pharmaceutical intermediates often seek reliable suppliers for this specific nitro-biphenyl derivative.
- Cosmetic Formulations: In the cosmetic industry, it can be used for its specific chemical properties, contributing to the efficacy or stability of various beauty and skincare products. Sourcing cosmetic raw materials requires adherence to high standards, and dependable manufacturers are key.
- Diagnostic Reagents: The compound's precise chemical nature makes it valuable in the development of diagnostic reagents for in-vitro diagnostics (IVD). It can be a component in assays that require specific chemical reactions for detection, such as in enzymatic assays or colorimetric tests. Researchers in this field often need to purchase diagnostic reagents or their components.
- Advanced Organic Synthesis: Beyond its direct industrial applications, 4-Methoxy-3-nitrobiphenyl serves as a valuable synthon for researchers in academia and industry. Its functional groups (methoxy, nitro, and biphenyl structure) provide multiple reaction sites for creating complex organic molecules.
Where to Procure 4-Methoxy-3-nitrobiphenyl
For professionals requiring this chemical, identifying a trustworthy manufacturer of 4-methoxy-3-nitrobiphenyl is paramount. Factors to consider include product purity, consistent availability, competitive pricing (especially for bulk orders of CAS 15854-73-6), and a strong supplier-customer relationship. Chinese chemical manufacturers, such as NINGBO INNO PHARMCHEM CO.,LTD., offer excellent value, combining advanced manufacturing capabilities with competitive pricing. Their role as a chemical supplier ensures that these vital intermediates reach laboratories and production facilities worldwide efficiently.
Understanding the specific requirements for your research or production is crucial. Whether you need a reliable pharmaceutical intermediate supplier or a specialist in diagnostic reagent components, choosing a supplier with a proven track record, like NINGBO INNO PHARMCHEM CO.,LTD., ensures quality and facilitates your project’s success. We are dedicated to supporting your chemical sourcing needs.
Perspectives & Insights
Molecule Vision 7
“5°C at 760 mmHg) indicates thermal stability, making it suitable for processes requiring elevated temperatures.”
Alpha Origin 24
“Applications Driving Scientific Progress The utility of 4-Methoxy-3-nitrobiphenyl spans several critical sectors: Pharmaceutical Intermediates: As a pharmaceutical intermediate, this compound is instrumental in the multi-step synthesis of Active Pharmaceutical Ingredients (APIs).”
Future Analyst X
“Its specific structural features allow for targeted chemical modifications, leading to the creation of new therapeutic agents.”