CAS 60469-88-7
:benzoic acid, 3,4-dibromo-, ethyl ester
Description:
Benzoic acid, 3,4-dibromo-, ethyl ester, with the CAS number 60469-88-7, is an organic compound characterized by its ester functional group derived from benzoic acid and ethyl alcohol. This compound features a benzene ring substituted with two bromine atoms at the 3 and 4 positions, which significantly influences its chemical properties and reactivity. The presence of bromine atoms enhances the compound's electrophilicity, making it more reactive in various chemical reactions. Typically, esters like this one exhibit moderate solubility in organic solvents and lower solubility in water due to their hydrophobic aromatic structure. The compound may be used in organic synthesis and as an intermediate in the production of other chemicals. Additionally, the bromine substituents can impart unique biological activities, making such compounds of interest in medicinal chemistry and materials science. Safety data should be consulted for handling and potential hazards, as halogenated compounds can exhibit toxicity and environmental persistence.
Formula:C9H8Br2O2
InChI:InChI=1/C9H8Br2O2/c1-2-13-9(12)6-3-4-7(10)8(11)5-6/h3-5H,2H2,1H3
SMILES:CCOC(=O)c1ccc(c(c1)Br)Br
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Found 3 products.
3,4-DIBROMOBENZOIC ACID ETHYL ESTER
CAS:Formula:C9H8Br2O2Purity:97%Color and Shape:SolidMolecular weight:307.96663,4-Dibromobenzoic acid ethyl ester
CAS:<p>3,4-Dibromobenzoic acid ethyl ester is a high quality reagent that can be used as an intermediate for the synthesis of complex compounds. It is also useful as a building block for the synthesis of speciality chemicals and research chemicals. 3,4-Dibromobenzoic acid ethyl ester can be used in reactions such as Friedel-Crafts reactions, reducing reactions, and condensations. This chemical is a versatile building block that can be used to construct organic molecules with diverse structures. 3,4-Dibromobenzoic acid ethyl ester is a fine chemical with CAS number 60469-88-7.</p>Formula:C9H8Br2O2Purity:Min. 95%Molecular weight:307.97 g/mol


