Cas no 2090300-72-2 (4-Bromo-5-chloro-2-methylbenzamide)

4-Bromo-5-chloro-2-methylbenzamide structure
2090300-72-2 structure
Product Name:4-Bromo-5-chloro-2-methylbenzamide
CAS No:2090300-72-2
MF:C8H7BrClNO
MW:248.50
CID:5076492
Update Time:2026-03-01

4-Bromo-5-chloro-2-methylbenzamide Chemical and Physical Properties

Names and Identifiers

    • 4-Bromo-5-chloro-2-methylbenzamide
    • Inchi: 1S/C8H7BrClNO/c1-4-2-6(9)7(10)3-5(4)8(11)12/h2-3H,1H3,(H2,11,12)
    • InChI Key: KOQRDMXCIBQULH-UHFFFAOYSA-N
    • SMILES: C(N)(=O)C1=CC(Cl)=C(Br)C=C1C

4-Bromo-5-chloro-2-methylbenzamide Pricemore >>

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Additional information on 4-Bromo-5-chloro-2-methylbenzamide

4-Bromo-5-chloro-2-methylbenzamide (CAS No. 2090300-72-2): A Comprehensive Overview

4-Bromo-5-chloro-2-methylbenzamide (CAS No. 2090300-72-2) is a specialized organic compound that has garnered significant attention in pharmaceutical and agrochemical research. This halogenated benzamide derivative is widely recognized for its potential applications in drug discovery and crop protection. With the increasing demand for novel chemical entities in these fields, understanding the properties and uses of 4-Bromo-5-chloro-2-methylbenzamide becomes crucial for researchers and industry professionals.

The molecular structure of 4-Bromo-5-chloro-2-methylbenzamide features a benzamide core substituted with bromine at the 4-position, chlorine at the 5-position, and a methyl group at the 2-position. This unique arrangement of substituents contributes to its distinct chemical behavior and makes it a valuable intermediate in organic synthesis. Recent studies in medicinal chemistry have highlighted the importance of such halogenated compounds in developing new therapeutic agents, particularly in the areas of central nervous system disorders and anti-inflammatory drugs.

In the field of agrochemical research, 4-Bromo-5-chloro-2-methylbenzamide has shown promise as a precursor for developing novel pesticides and herbicides. The presence of both bromine and chlorine atoms in its structure enhances its potential biological activity, making it an interesting candidate for further investigation. Researchers are particularly interested in how modifications to this core structure might lead to more effective and environmentally friendly crop protection solutions.

The synthesis of 4-Bromo-5-chloro-2-methylbenzamide typically involves multi-step organic reactions starting from commercially available precursors. Modern green chemistry approaches are being explored to optimize its production, reducing waste and improving yields. These developments align with current industry trends toward more sustainable chemical manufacturing processes, a topic of great interest in both academic and industrial circles.

Analytical characterization of 4-Bromo-5-chloro-2-methylbenzamide is typically performed using advanced techniques such as nuclear magnetic resonance (NMR) spectroscopy, mass spectrometry, and high-performance liquid chromatography (HPLC). These methods ensure the purity and quality of the compound, which is essential for research applications. The growing importance of quality control in chemical research has made these analytical aspects particularly relevant to today's scientific community.

From a commercial perspective, 4-Bromo-5-chloro-2-methylbenzamide is available through specialized chemical suppliers who cater to the pharmaceutical and agrochemical industries. The global market for such fine chemicals has been expanding steadily, driven by increased R&D activities in these sectors. Companies specializing in custom synthesis and contract research often seek compounds like 4-Bromo-5-chloro-2-methylbenzamide to support their clients' innovation pipelines.

Safety considerations for handling 4-Bromo-5-chloro-2-methylbenzamide follow standard laboratory protocols for organic compounds. Proper personal protective equipment (PPE) including gloves and safety glasses should be used when working with this material. While not classified as highly hazardous, prudent laboratory practices should always be observed, reflecting the current emphasis on laboratory safety in chemical research environments.

Storage recommendations for 4-Bromo-5-chloro-2-methylbenzamide typically suggest keeping the compound in a cool, dry place, protected from light and moisture. These conditions help maintain the stability of the material over time, which is particularly important for research applications where consistent quality is required. The topic of chemical storage and stability has gained increased attention as researchers seek to optimize their material management practices.

Future research directions for 4-Bromo-5-chloro-2-methylbenzamide may explore its potential as a building block for more complex molecular architectures. The growing field of fragment-based drug discovery could benefit from such well-characterized intermediates. Additionally, its applications in material science, particularly in the development of specialty polymers or functional materials, represent another promising avenue for investigation.

In conclusion, 4-Bromo-5-chloro-2-methylbenzamide (CAS No. 2090300-72-2) represents an important chemical entity with diverse potential applications in pharmaceutical and agrochemical research. Its unique structural features and synthetic versatility make it a valuable tool for scientists working in these fields. As research continues to uncover new applications for halogenated benzamides, compounds like 4-Bromo-5-chloro-2-methylbenzamide will likely remain at the forefront of chemical innovation.

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