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16732-65-3

1H-Indole-2-carboxylic acid, 6-bromo-

Catalog#: AR001XZU  |   CAS#: 16732-65-3  |   MDL#: MFCD02664469  |   MF: C9H6BrNO2  |   MW: 240.0534

Packsize Purity Price Availability Quantity
250mg 95% $4.00 Global Stock Buy Now Add To Cart
1g 95% $5.00 Global Stock Buy Now Add To Cart
5g 95% $22.00 Global Stock Buy Now Add To Cart
10g 95% $40.00 Global Stock Buy Now Add To Cart
25g 95% $94.00 Global Stock Buy Now Add To Cart
100g 95% $332.00 Global Stock Buy Now Add To Cart
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Catalog Number AR001XZU
Chemical Name 1H-Indole-2-carboxylic acid, 6-bromo-
CAS Number 16732-65-3
Molecular Formula C9H6BrNO2
Molecular Weight 240.0534
MDL Number MFCD02664469
SMILES Brc1ccc2c(c1)[nH]c(c2)C(=O)O

6-bromoindole-2-carboxylic acid is a valuable building block in chemical synthesis, commonly utilized in the pharmaceutical industry and other organic chemistry applications. Its unique structure and reactivity make it a versatile compound for the construction of various functionalized indole derivatives. In chemical synthesis, 6-bromoindole-2-carboxylic acid serves as a key intermediate in the production of diverse biologically active compounds, such as pharmaceuticals, agrochemicals, and materials. Its strategic placement of a bromine atom and carboxylic acid group enables the introduction of additional substituents through various synthetic transformations. By utilizing 6-bromoindole-2-carboxylic acid as a starting material, chemists can access a wide range of indole derivatives with tailored properties and functionalities. Its presence in the molecular structure imparts significant synthetic flexibility, allowing for the introduction of different chemical groups to modulate the compound's biological activity or physical characteristics. Overall, the application of 6-bromoindole-2-carboxylic acid in chemical synthesis plays a crucial role in the design and development of novel molecules with potential therapeutic or industrial relevance. Its structural features and synthetic versatility make it a valuable tool for organic chemists seeking to create complex molecules with specific properties and functions.
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