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Electronical chemicals

9-bromo-10-(4-naphthalene-2-yl-phenyl)anthracene

CAS number

866611-29-2

Molecular formula C30H19Br
Product name 9-bromo-10-(4-naphthalene-2-yl-phenyl)anthracene
Molecular Structure

Molecular Weight:459.37600

PSA:0.00000

LogP:9.24270


9-bromo-10-(4-naphthalene-2-yl-phenyl)anthracene, also known as 9-bromo-10-(4-naphthylphenyl)anthracene, is an organic compound often used in organic synthesis, photochemistry, and material science. It belongs to the family of anthracene derivatives and has a structure similar to the anthracene core, but with substitution of one of the benzene rings with a naphthalene ring.


The chemical formula of 9-bromo-10-(4-naphthylphenyl)anthracene is C22H14Br. It has a molecular weight of 367.17 g/mol and has a melting point of 246℃ and a boiling point of 420 °C. It is a yellow-orange crystalline solid with an intense yellow color, and has an aromatic odor.


9-bromo-10-(4-naphthylphenyl)anthracene is insoluble in water and slightly soluble in common organic solvents such as benzene, toluene, and chloroform. It is highly reactive and can easily undergo substitution reactions with strong acids and bases, as well as nucleophilic and electrophilic reagents.


The most common use of 9-bromo-10-(4-naphthylphenyl)anthracene is in the synthesis of organic compounds. It is also used in photochemistry and material science due to its strong absorption of ultraviolet light. The compound is also used in the synthesis of fluorescent dyes, pigments, and for the preparation of nanomaterials.


9-bromo-10-(4-naphthylphenyl)anthracene is a hazardous material and should be handled with caution. It should be stored in a cool, dry place and away from any sources of heat and light. It should also be kept away from any reactive materials such as acids, bases, and oxidizing agents.


In conclusion, 9-bromo-10-(4-naphthylphenyl)anthracene is an important organic compound with a unique structure and multiple uses in organic synthesis, photochemistry, and material science. Its strong absorption of ultraviolet light makes it especially useful in the synthesis of fluorescent dyes, pigments, and nanomaterials. However, it should be handled with caution due to its hazardous nature.


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