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Product Line: Pharmaceutical Chemicals

2-bromo-4-methoxybenzoic acid

CAS 74317-85-4

Molecular structure of 2-bromo-4-methoxybenzoic acid

CAS · 74317-85-4

01

Product Overview

2-bromo-4-methoxybenzoic acid is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Light yellow to off-white powder
Purity 99% min
Water 0.5% max
Melting Point 119 °C
03

Applications

2-Bromo-4-methoxybenzoic acid is widely used as an intermediate in pharmaceutical and organic synthesis. It serves as a building block for the preparation of bioactive molecules, including anti-inflammatory, antimicrobial, and anticancer agents. The bromine atom allows for cross-coupling reactions, such as Suzuki and Heck couplings, facilitating the synthesis of complex aromatic derivatives. Additionally, it is used in the preparation of fine chemicals, functionalized aromatic compounds, and specialty materials for research and industrial applications.

04

Benefits

The compound offers significant synthetic versatility due to the combination of the bromine substituent and carboxylic acid functionality. Its methoxy group contributes to electronic modulation, enhancing reactivity in subsequent transformations. The bromine atom provides a reactive site for selective coupling reactions, enabling efficient multi-step synthesis. Its stability and solubility in organic solvents further support ease of handling and incorporation into diverse chemical processes, improving yield and reliability in pharmaceutical and material syntheses.

05

Conclusion

2-Bromo-4-methoxybenzoic acid is an important intermediate for the synthesis of bioactive molecules and functional aromatic compounds. Its reactive bromine and methoxy-substituted carboxylic acid structure enable versatile chemical modifications, making it valuable in pharmaceuticals, fine chemicals, and research applications. Its stability and reactivity ensure efficiency in multi-step synthetic processes.

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