CAS 16980-01-1
:Bis(4-BROMOMETHYLPHENYL)METHANE
Description:
Bis(4-bromomethylphenyl)methane, with the CAS number 16980-01-1, is an organic compound characterized by its structure, which features two 4-bromomethylphenyl groups attached to a central methane carbon. This compound is typically a solid at room temperature and exhibits a relatively high melting point due to the presence of bromine substituents, which enhance its molecular weight and influence its physical properties. The bromomethyl groups contribute to its reactivity, making it a potential candidate for various chemical reactions, including nucleophilic substitutions and cross-linking in polymer chemistry. Additionally, the presence of bromine atoms can impart certain electronic properties, affecting its behavior in different chemical environments. Bis(4-bromomethylphenyl)methane may also exhibit hydrophobic characteristics due to its aromatic structure, influencing its solubility in organic solvents. Safety data should be consulted for handling, as brominated compounds can pose health risks. Overall, this compound is of interest in materials science and organic synthesis due to its unique structural features and reactivity.
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Found 3 products.
Bis(4-bromomethylphenyl)methane
CAS:Formula:C15H14Br2Purity:98%Color and Shape:SolidMolecular weight:354.0797Bis(4-bromomethylphenyl)methane
CAS:Bis(4-bromomethylphenyl)methanePurity:98%Molecular weight:354.08g/molBis(4-bromomethylphenyl)methane - 90%
CAS:Bis(4-bromomethylphenyl)methane (BBMM) is a synthesized molecule that can be used as a substitute for uranyl in the synthesis of uranium complexes. The molecule has been synthesized by reacting 4-bromomethylphenol with methyltetrahydrofuran. BBMM is an acidic compound and has affinity for anions such as chloride, fluoride, and cyclophanes. It also exhibits constant molecular weight with a functionalised structure, which makes it suitable for use in nuclear magnetic resonance spectroscopy.Formula:C15H14Br2Purity:Min. 95%Color and Shape:PowderMolecular weight:354.08 g/mol



