Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL]
Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL]: A High-Quality Research Chemical Our Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL] is a cutting-edge research chemical designed for scientists and researchers in the field of organic synthesis. This
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Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL]
Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL]: A High-Quality Research Chemical
Our Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL] is a cutting-edge research chemical designed for scientists and researchers in the field of organic synthesis. This compound, with its unique chemical structure and formula C10H15N3O, offers a wide range of applications in drug discovery and material science. Its molecular weight of 193.25 g/mol and CAS RN of 167261-43-0 make it a valuable addition to any laboratory.- High purity ensures reliable and consistent results.
- Optimized for use in organic synthesis and drug discovery.
Key Properties and Specifications
This product is available in a 2-8°C storage condition, ensuring its stability and longevity. The SMILES notation for Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL] is CC(C)[C@@H](C(=O)NC1=CC=CC=N1)N, which is crucial for understanding its chemical behavior. The product is supplied with a purity of 98% and comes with a Cat. No. BDJHH043007 and MDL No. MFCD09724720.- Storage: Keep in a dark place, inert atmosphere, 2-8°C.
- Formula: C10H15N3O.
Applications and Benefits
Super Saver (s)-2-amino-3-methyl-n-(pyridin-2-yl)butanamide Click To View [3Vc2bBEL] is highly sought after for its versatility in various research applications. It is particularly useful in the development of new pharmaceuticals and materials. The compound's unique properties make it an ideal candidate for exploring novel chemical reactions and understanding molecular interactions. Its practical uses include- Drug discovery: Facilitating the development of new medications.
- Material science: Advancing the creation of innovative materials.
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