Price Mistake? 2-((tert-butoxycarbonyl)amino)-3-cyclooctylpropanoic Acid Up To 40% Off [AnSZBjTX]
Advanced Chemical Compound Our product, Price Mistake? 2-((tert-butoxycarbonyl)amino)-3-cyclooctylpropanoic Acid Up To 40% Off [AnSZBjTX], represents the pinnacle of chemical synthesis and purity. Engineered for precision, this compound is perfect for applications requiring high-quality o
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Price Mistake? 2-((tert-butoxycarbonyl)amino)-3-cyclooctylpropanoic Acid Up To 40% Off [AnSZBjTX]
Advanced Chemical Compound
Our product, Price Mistake? 2-((tert-butoxycarbonyl)amino)-3-cyclooctylpropanoic Acid Up To 40% Off [AnSZBjTX], represents the pinnacle of chemical synthesis and purity. Engineered for precision, this compound is perfect for applications requiring high-quality organic molecules. With its unique structure and formula, C16H29NO4, it stands out as a reliable choice for research and development in various fields.- Enhanced purity ensures consistent results
- High molecular weight of 299.41 for robust applications
- Storage in an inert atmosphere for maximum shelf life
Technical Specifications
This compound, bearing the CAS RN 1067881-40-6, boasts an intricate SMILES representation, CC(C)(C)OC(=O)NC(CC1CCCCCCC1)C(=O)O, that defines its chemical identity. Its molecular weight of 299.41 and storage conditions in an inert atmosphere at room temperature guarantee stability and longevity. The product is also available through our Cat. No. BDJHH045312 and MDL No. MFCD09916365, making it easily accessible for researchers worldwide.- Comprehensive specifications for accurate usage
- High molecular weight and purity for reliable performance
- Storage conditions optimized for stability and shelf life
Applications and Benefits
Price Mistake? 2-((tert-butoxycarbonyl)amino)-3-cyclooctylpropanoic Acid Up To 40% Off [AnSZBjTX] is an invaluable tool for chemists and researchers. Its versatile nature makes it suitable for a wide range of applications, including drug discovery, material science, and biochemical research. The product's advanced features, such as its structural complexity and purity, contribute to its efficacy in these areas.- Optimized for research and development in chemistry and biology
- Contributes to the advancement of new materials and drugs
- Enhances productivity and efficiency in laboratory settings
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