2-(7-Methoxynaphthalen-1-yl)acetic Acid: A Key Intermediate for Pharmaceutical Synthesis and Agrochemical Innovation
Discover the crucial role of 2-(7-Methoxynaphthalen-1-yl)acetic Acid (CAS 6836-22-2) in advancing pharmaceutical development and plant science. As a vital intermediate, it drives innovation in drug synthesis and agricultural research.
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2-(7-Methoxynaphthalen-1-yl)acetic acid
This meticulously synthesized compound serves as a cornerstone for various advanced chemical processes. Our commitment as a reliable supplier in China ensures high purity and consistent quality, making it an indispensable component for critical applications in medicinal chemistry and beyond.
- Leveraging expertise in pharmaceutical intermediates, we ensure the quality required for Agomelatine synthesis, a key application for this compound.
- Understanding its role as an auxin inhibitor in plant science, researchers utilize this chemical for groundbreaking agrochemical studies.
- As a leading 2-(7-Methoxynaphthalen-1-yl)acetic acid manufacturer in China, we guarantee a stable supply chain for global research and production needs.
- The compound's well-defined chemical properties, including its melting point of 153-154°C, facilitate precise handling and integration into complex synthetic routes.
Advantages You Gain
Pharmaceutical Purity
Achieve superior results in drug synthesis, particularly for complex molecules like Agomelatine, by utilizing our high-purity 2-(7-Methoxynaphthalen-1-yl)acetic acid, a testament to our capabilities as a fine chemical supplier.
Agrochemical Potential
Explore novel solutions in agriculture by integrating this compound into your research, benefiting from its properties as a potent inhibitor of auxin action in plants, crucial for developing advanced plant growth regulators.
Reliable Supply Chain
Secure a consistent and dependable source for CAS 6836-22-2 from our China-based operations, ensuring uninterrupted production and research timelines for your projects.
Key Applications
Agomelatine Production
This compound is a critical building block in the synthesis of Agomelatine, a medication used to treat depression, underscoring its importance in medicinal chemistry and pharmaceutical manufacturing.
Plant Science Research
Its documented ability to inhibit auxin transport and action makes it a valuable tool for researchers studying plant development and hormone regulation, contributing to advancements in agrochemical applications.
Organic Synthesis
The reactive functional groups and naphthalene structure make it a versatile precursor for creating a wide array of complex organic molecules, essential for developing new compounds in various scientific fields.
Chemical Intermediate Supply
As a sought-after chemical intermediate, it plays a vital role in the broader chemical industry, supporting research and development efforts across multiple sectors by providing a foundational molecular structure.