
CAS 503821-94-1
:3-BROMO-2-IODOBENZOIC ACID
Description:
3-Bromo-2-iodobenzoic acid is an aromatic carboxylic acid characterized by the presence of both bromine and iodine substituents on the benzene ring. Specifically, the bromine atom is located at the meta position (3-position) relative to the carboxylic acid group, while the iodine atom is at the ortho position (2-position). This compound typically appears as a solid at room temperature and is soluble in organic solvents, though its solubility in water may be limited due to the hydrophobic nature of the halogen substituents. The presence of these halogens can influence the compound's reactivity, making it useful in various chemical reactions, including nucleophilic substitutions and coupling reactions. Additionally, the unique combination of bromine and iodine can impart specific electronic and steric effects, which may be beneficial in medicinal chemistry and material science applications. As with many halogenated compounds, appropriate safety measures should be taken when handling this substance due to potential toxicity and environmental concerns.
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Found 4 products.
3-Bromo-2-iodobenzoic acid
CAS:Formula:C7H4BrIO2Purity:95%Color and Shape:SolidMolecular weight:326.91393-Bromo-2-iodobenzoic acid
CAS:<p>3-Bromo-2-iodobenzoic acid</p>Formula:C7H4BrIO2Purity:≥95%Color and Shape: orange powderMolecular weight:326.91g/mol3-Bromo-2-iodobenzoic acid
CAS:Formula:C7H4BrIO2Purity:95%Color and Shape:SolidMolecular weight:326.9153-bromo-2-iodobenzoic acid
CAS:<p>3-bromo-2-iodobenzoic acid is a non-covalent interactions agent that binds to the lanthanide ion. It also has been shown to be an effective ligand for the assembly of various supramolecular structures. 3-bromo-2-iodobenzoic acid has been synthesized with different substituents, including phenyl groups, which may affect its polarizability and ability to form halogen bonds. The frequency of this compound can be determined by measuring its absorption spectrum in the UV region. 3-bromo-2-iodobenzoic acid complements other ligands and can act as a catalyst for many mechanisms, such as bonding, stacking, and hydrogen bonding.</p>Formula:C7H4BrIO2Purity:Min. 95%Molecular weight:326.9 g/mol



