Holiday Special 3-amino-6-chloro-4-methylpicolinamide Best Choice [k2aDoyfc]
3-Amino-6-Chloro-4-Methylpicolinamide: A Potent Compound Discover the power of 3-Amino-6-Chloro-4-Methylpicolinamide, a highly effective compound designed for a variety of applications. This compound, with the chemical formula C7H8ClN3O and a molecul
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3-Amino-6-Chloro-4-Methylpicolinamide: A Potent Compound
Discover the power of 3-Amino-6-Chloro-4-Methylpicolinamide, a highly effective compound designed for a variety of applications. This compound, with the chemical formula C7H8ClN3O and a molecular weight of 185.61, is a versatile tool for researchers and manufacturers alike. Its unique structure, featuring a chlorinated and methylated picolinamide backbone, offers a distinct advantage in its applications.- Chemical Characteristics: The SMILES notation CC1=CC(=NC(=C1N)C(=O)N)Cl provides a clear representation of its molecular structure.
- High Purity: Available with a purity level that ensures reliable results and repeatable experiments.
Key Features and Specifications
Our 3-Amino-6-Chloro-4-Methylpicolinamide is not only effective but also easy to work with. It is stable under normal conditions and requires storage in an inert atmosphere at room temperature, ensuring its integrity and usability.- Storage Conditions: Store in an inert atmosphere at room temperature to maintain its stability and efficacy.
- Quality Assurance: We offer this product under the Cat. No. BDJHH041632, ensuring a high standard of quality and traceability.
Applications and Benefits
3-Amino-6-Chloro-4-Methylpicolinamide is a valuable addition to any laboratory or manufacturing process. Its unique properties make it suitable for a wide range of applications, including research, pharmaceutical development, and chemical synthesis.- Research Applications: It can be used in various biochemical assays, offering researchers a tool to study and understand complex reactions.
- Pharmaceutical Development: The compound's potential for drug development is significant, as it can be used to create novel molecules with desired properties.
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