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69975-66-2

3-Oxo-indan-5-carbonitrile

Catalog#: AR005SWC  |   CAS#: 69975-66-2  |   MDL#: MFCD02179291  |   MF: C10H7NO  |   MW: 157.16868000000002

Packsize Purity Price Availability Quantity
250mg 97% $6.00 Global Stock Buy Now Add To Cart
1g 97% $10.00 Global Stock Buy Now Add To Cart
5g 97% $50.00 Global Stock Buy Now Add To Cart
10g 97% $100.00 Global Stock Buy Now Add To Cart
25g 97% $248.00 Global Stock Buy Now Add To Cart
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Catalog Number AR005SWC
Chemical Name 3-Oxo-indan-5-carbonitrile
CAS Number 69975-66-2
Molecular Formula C10H7NO
Molecular Weight 157.16868000000002
MDL Number MFCD02179291
SMILES N#Cc1ccc2c(c1)C(=O)CC2

6-Cyano-1-indanone is a versatile compound commonly employed in chemical synthesis due to its unique reactivity and structural characteristics. This chemical building block plays a crucial role in the preparation of various organic molecules with complex structures and diverse functionalities.One key application of 6-Cyano-1-indanone is its utility as a precursor in the synthesis of biologically active compounds and pharmaceuticals. By serving as a starting material for the introduction of different functional groups and modifications, this compound enables chemists to design and create novel drug candidates with improved therapeutic properties.Additionally, 6-Cyano-1-indanone is often used in the synthesis of specialized materials such as polymers, dyes, and agrochemicals. Its ability to participate in various chemical reactions, including nucleophilic additions and substitutions, makes it a valuable tool in the development of advanced materials for industrial and scientific applications.Furthermore, the structural features of 6-Cyano-1-indanone make it a valuable intermediate in organic synthesis strategies for the construction of complex molecular frameworks. Its rigid bicyclic structure provides opportunities for regioselective and stereoselective transformations, allowing chemists to access structurally diverse compounds efficiently.Overall, the application of 6-Cyano-1-indanone in chemical synthesis extends across multiple disciplines, offering a wide range of opportunities for the creation of new molecules with tailored properties and functionalities. Its versatility and reactivity make it an essential component in the toolbox of synthetic chemists seeking to explore the frontiers of organic chemistry.
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