3-fluoro-4-(methanesulfonamido)benzoic acid


Chemical Name: 3-fluoro-4-(methanesulfonamido)benzoic acid
CAS Number: 716361-59-0
Product Number: AG00FXYI(AGN-PC-0CR8GI)
Synonyms:
MDL No: MFCD18285558
Molecular Formula: C8H8FNO4S
Molecular Weight: 233.2168

Identification/Properties


Safety Information


GHS Pictogram:
Signal Word:
Warning
UN#:
N/A
Hazard Statements:
H302-H315-H319-H335
Precautionary Statements:
P261-P280-P301+P312-P302+P352-P305+P351+P338
Class:
N/A
Packing Group:
N/A

NMR Spectrum


Other Analytical Data


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Chemical Structure



3-Fluoro-4-(methylsulfonamido)benzoic acid is a versatile compound widely employed in chemical synthesis for its unique properties and reactivity. This compound functions as a key building block in the creation of pharmaceutical intermediates and agrochemicals, owing to its ability to serve as a precursor in various organic reactions.One important application of 3-Fluoro-4-(methylsulfonamido)benzoic acid is in the synthesis of novel drug candidates. By utilizing its fluorine and sulfonamide functionalities, this compound can be strategically incorporated into medicinal molecules to enhance their biological activity, selectivity, and pharmacokinetic profiles. Its presence can also confer improved metabolic stability and resistance to enzymatic degradation, making it a valuable tool in the development of next-generation pharmaceuticals.Furthermore, 3-Fluoro-4-(methylsulfonamido)benzoic acid plays a crucial role in the design and synthesis of advanced materials, such as liquid crystals, polymers, and functionalized surfaces. Its structural features make it a favored starting material for constructing complex organic frameworks with tailored properties, which find applications in electronic devices, sensors, and coatings.In the realm of chemical synthesis, this compound offers chemists a versatile platform for creating diverse molecular structures with precision and efficiency. Its incorporation into synthetic routes enables the synthesis of intricate molecules that would otherwise be challenging to access, demonstrating its significance as a valuable tool in the quest for novel compounds with desirable properties.