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9,10-Dibromoanthracene CAS:523-27-3

9,10-Dibromoanthracene is a notable compound that holds substantial significance in the realms of organic chemistry, materials science, and photochemistry. With bromine atoms attached to both the ninth and tenth positions of the anthracene core, this molecule exhibits distinct chemical properties that render it valuable for a range of synthetic applications and functional material design. The symmetrical placement of the bromine substituents on the anthracene framework offers unique opportunities for exploring reactivity patterns, molecular transformations, and optical properties. Understanding the structural features and chemical behavior of 9,10-Dibromoanthracene is essential for advancing research in organic synthesis, photoactive materials, and optoelectronic devices.


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Application and Effect:

The structural configuration of 9,10-Dibromoanthracene provides a platform for exploring diverse synthetic strategies and enabling the development of complex organic frameworks with tailored functionalities. The presence of bromine atoms at strategic positions in the anthracene scaffold facilitates selective functionalization, cross-coupling reactions, and the formation of novel molecular architectures with specific properties. By investigating the synthetic routes, reactivity profiles, and photophysical characteristics of 9,10-Dibromoanthracene, researchers can uncover its potential as a versatile building block for designing photoactive materials, organic semiconductors, and light-emitting compounds. Research on the synthesis and applications of 9,10-Dibromoanthracene aims to elucidate its role as a key intermediate in organic synthesis and as a precursor for the development of functional materials with tailored photochemical properties. Exploring the reactivity of this compound towards various chemical transformations, investigating its photophysical behavior, and studying its potential applications in optoelectronic devices can provide insights into its utility for creating advanced organic compounds and materials with enhanced optical functionalities. The versatility and photoreactivity of 9,10-Dibromoanthracene as a halogenated aromatic compound present exciting opportunities for researchers to innovate in the fields of organic chemistry, materials science, and photonics. By delving into its synthesis, characterization, and functionalization, scientists can explore novel avenues for developing photoactive molecules, light-responsive materials, and optoelectronic components with tailored optical properties. Through detailed investigations into the properties and applications of 9,10-Dibromoanthracene, researchers can contribute to the advancement of photochemistry, materials design, and related disciplines, driving progress towards the creation of innovative compounds and materials for diverse technological applications.

Product Sample:

L-Arginine1
L-Arginine2

Product Packing:

L-Arginin3

Additional Information:

Composition C14H8Br2
Assay 99%
Appearance white powder
CAS No.  523-27-3
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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