Cas no 926249-52-7 (2-methyl-5-(methylsulfamoyl)benzoic acid)

2-Methyl-5-(methylsulfamoyl)benzoic acid is a sulfonamide-substituted benzoic acid derivative with potential applications in pharmaceutical and chemical synthesis. Its key structural features include a methyl group at the 2-position and a methylsulfamoyl moiety at the 5-position, contributing to its unique reactivity and solubility profile. This compound is valued for its role as an intermediate in the development of biologically active molecules, particularly in medicinal chemistry. The presence of both carboxylic acid and sulfonamide functional groups allows for versatile derivatization, making it useful in designing enzyme inhibitors or receptor modulators. Its well-defined structure and purity ensure consistent performance in synthetic applications.
2-methyl-5-(methylsulfamoyl)benzoic acid structure
926249-52-7 structure
Product Name:2-methyl-5-(methylsulfamoyl)benzoic acid
CAS No:926249-52-7
MF:C9H11NO4S
MW:229.25294137001
CID:4665569
PubChem ID:16767905
Update Time:2025-11-02

2-methyl-5-(methylsulfamoyl)benzoic acid Chemical and Physical Properties

Names and Identifiers

    • 2-Methyl-5-(methylsulfamoyl)benzoic Acid
    • Benzoic acid, 2-methyl-5-[(methylamino)sulfonyl]-
    • 2-methyl-5-(methylsulfamoyl)benzoic acid
    • Inchi: 1S/C9H11NO4S/c1-6-3-4-7(15(13,14)10-2)5-8(6)9(11)12/h3-5,10H,1-2H3,(H,11,12)
    • InChI Key: FQWJLMDMQRESMA-UHFFFAOYSA-N
    • SMILES: C(O)(=O)C1=CC(S(NC)(=O)=O)=CC=C1C

2-methyl-5-(methylsulfamoyl)benzoic acid Pricemore >>

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Additional information on 2-methyl-5-(methylsulfamoyl)benzoic acid

Comprehensive Guide to 2-methyl-5-(methylsulfamoyl)benzoic acid (CAS No. 926249-52-7): Properties, Applications, and Market Insights

2-methyl-5-(methylsulfamoyl)benzoic acid (CAS No. 926249-52-7) is a specialized organic compound that has garnered significant attention in pharmaceutical and chemical research. This benzoic acid derivative features a unique molecular structure with a methylsulfamoyl group at the 5-position and a methyl group at the 2-position, making it a valuable intermediate in drug development. Researchers and industry professionals frequently search for "2-methyl-5-(methylsulfamoyl)benzoic acid uses" and "CAS 926249-52-7 applications," reflecting growing interest in its potential.

The compound's molecular formula is C9H11NO4S, with a molecular weight of 229.25 g/mol. Its chemical properties include moderate solubility in polar organic solvents and stability under standard laboratory conditions. Recent studies have explored its role as a pharmaceutical intermediate, particularly in the synthesis of novel therapeutic agents targeting metabolic disorders. The surge in searches for "methylsulfamoyl compounds in medicine" aligns with current trends in personalized healthcare and targeted drug design.

In industrial applications, 2-methyl-5-(methylsulfamoyl)benzoic acid serves as a key building block for specialty chemicals. Its structural features make it suitable for creating advanced materials with specific electronic or optical properties. Manufacturers often inquire about "CAS 926249-52-7 suppliers" and "high purity 2-methyl-5-(methylsulfamoyl)benzoic acid," indicating strong market demand. The compound's production typically involves multi-step organic synthesis with careful control of reaction parameters to ensure optimal yield and purity.

Quality control for 926249-52-7 involves advanced analytical techniques such as HPLC, NMR spectroscopy, and mass spectrometry. These methods verify the compound's identity and purity, which is crucial for research and industrial applications. Recent technological advancements have improved synthesis efficiency, addressing common search queries like "how to synthesize 2-methyl-5-(methylsulfamoyl)benzoic acid" and "optimization of benzoic acid derivative production."

The global market for 2-methyl-5-(methylsulfamoyl)benzoic acid shows steady growth, driven by increasing R&D investments in pharmaceutical and specialty chemical sectors. Market analysts note particular interest in Asia-Pacific regions, where searches for "CAS 926249-52-7 price trends" and "benzoic acid derivative market analysis" have risen significantly. Regulatory compliance remains a key consideration, with manufacturers ensuring adherence to international safety and quality standards.

From an environmental perspective, proper handling and disposal protocols for methylsulfamoyl-containing compounds are essential. The scientific community continues to investigate greener synthesis methods, responding to search trends like "eco-friendly production of pharmaceutical intermediates." These developments align with global sustainability initiatives in the chemical industry.

Future research directions for 2-methyl-5-(methylsulfamoyl)benzoic acid may explore its potential in novel drug formulations and advanced material science. The compound's versatility makes it a subject of ongoing investigation, particularly in addressing search queries such as "emerging applications of benzoic acid derivatives" and "innovative uses of sulfamoyl compounds." As analytical techniques advance, new properties and applications for this interesting molecule may be discovered.

For researchers working with 926249-52-7, proper storage conditions (typically cool, dry environments) and material compatibility information are crucial. Technical inquiries often focus on "stability of 2-methyl-5-(methylsulfamoyl)benzoic acid" and "compatibility with common reagents," highlighting practical considerations for laboratory use. These factors contribute to the compound's reliable performance in various applications.

In conclusion, 2-methyl-5-(methylsulfamoyl)benzoic acid (CAS No. 926249-52-7) represents an important compound in modern chemical research and industrial applications. Its unique structure and properties continue to inspire innovation across multiple sectors, from pharmaceutical development to advanced material engineering. As interest grows in specialized organic intermediates, this benzoic acid derivative maintains its relevance in addressing current scientific challenges and industrial needs.

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