
CAS 80351-58-2
:Bromodifluoromethylsulfonylbenzene
Description:
Bromodifluoromethylsulfonylbenzene, identified by its CAS number 80351-58-2, is an organic compound characterized by the presence of a bromine atom, two fluorine atoms, a sulfonyl group, and a benzene ring. This compound typically exhibits a high degree of reactivity due to the presence of the sulfonyl group, which can participate in various chemical reactions, including nucleophilic substitutions. The difluoromethyl group enhances its electrophilic character, making it useful in synthetic organic chemistry, particularly in the development of pharmaceuticals and agrochemicals. The bromine atom can also serve as a leaving group in certain reactions, further expanding its utility in chemical synthesis. In terms of physical properties, bromodifluoromethylsulfonylbenzene is likely to be a colorless to pale yellow liquid or solid, depending on its specific form and purity. Its stability and reactivity under different conditions can vary, necessitating careful handling and storage. Overall, this compound is of interest for its potential applications in various chemical processes and industries.
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Found 4 products.
Bromodifluoromethanesulfonylbenzene
CAS:BromodifluoromethanesulfonylbenzenePurity:95%Color and Shape:SolidMolecular weight:271.08g/molBromodifluoromethyl Phenyl Sulfone
CAS:Controlled Product<p>Applications Bromodifluoromethyl Phenyl Sulfone can be used to prepare difluoromethyl ethers via difluoromethylation of alcohols.<br>References Xie, Q., et.al.:Angew. Chem. Int., 56, 3206-3210, (2017);<br></p>Formula:C7H5O2F2SBrColor and Shape:NeatMolecular weight:271.07Bromodifluoromethanesulfonylbenzene
CAS:<p>Bromodifluoromethanesulfonylbenzene is a nucleophilic synthon that can be used for the synthesis of organometallic compounds. It is a halide with a trifluoromethyl group that is used in organic chemistry as an efficient method for the synthesis of sulfoxides and sulfones. Bromodifluoromethanesulfonylbenzene can be used in combination with aryl boronic acids, amines, and silicon to synthesize aldimines.</p>Formula:C7H5BrF2O2SPurity:Min. 95%Molecular weight:271.08 g/mol



