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679808-74-3

(S)-3-aminobutanenitrile,679808-74-3 - EBuyChem.com

Catalog#: AR00FHLF  |   CAS#: 679808-74-3  |   MDL#: MFCD12197314  |   MF: C4H8N2  |   MW: 84.1197

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Catalog Number AR00FHLF
Chemical Name (S)-3-aminobutanenitrile,679808-74-3 - EBuyChem.com
CAS Number 679808-74-3
Molecular Formula C4H8N2
Molecular Weight 84.1197
MDL Number MFCD12197314
SMILES C[C@@H](CC#N)N

(S)-3-Aminobutanenitrile, also known as (S)-3-aminobutyronitrile or (S)-β-aminopropionitrile, is a versatile compound widely used in chemical synthesis. Due to its unique structural and chemical properties, it plays a crucial role in various applications, particularly in the pharmaceutical and agrochemical industries.One of the key applications of (S)-3-Aminobutanenitrile is as a building block in the synthesis of complex organic molecules. Its primary amino group (-NH2) and nitrile group (-CN) make it a valuable precursor for the preparation of a wide range of important compounds. By reacting (S)-3-Aminobutanenitrile with different reagents and catalysts, chemists can generate diverse products with specific functionalities and stereochemistries.In pharmaceutical research, (S)-3-Aminobutanenitrile is commonly used to synthesize chiral drugs and pharmaceutical intermediates. Its enantiopure form enables the creation of enantiomerically pure compounds, which is crucial for developing effective and safe pharmaceutical products with minimal side effects. The ability to control the stereochemistry of the molecules derived from (S)-3-Aminobutanenitrile is essential for optimizing drug potency and selectivity.Moreover, (S)-3-Aminobutanenitrile is employed in the synthesis of agrochemicals, such as insecticides, herbicides, and fungicides. The versatility of this compound allows for the modification of its structure to introduce specific functional groups that enhance the efficacy and environmental safety of agricultural chemicals. By utilizing (S)-3-Aminobutanenitrile as a starting material, chemists can design novel agrochemicals with improved biological activities and reduced ecological impact.Overall, the application of (S)-3-Aminobutanenitrile in chemical synthesis is indispensable for the creation of diverse molecules with tailored properties for pharmaceutical, agricultural, and other industrial purposes. Its versatility and importance as a key building block highlight its significant role in advancing the field of organic chemistry and facilitating the development of innovative products in various sectors.
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