CAS · 35578-47-3
Product Overview
4,4′-Dibromobenzil is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Purity (HPLC) | 98% Min |
|---|---|
| Appearance | Yellow solid |
| Melting Point | 224–226 °C |
| Loss on drying | 1% Max |
Applications
4,4'-Dibromobenzil is primarily used as an intermediate in organic synthesis, materials science, and pharmaceutical research. It serves as a building block for the preparation of halogenated aromatic compounds, photochemical reagents, and heterocyclic derivatives. In medicinal chemistry, it is applied in the synthesis of bioactive molecules and potential therapeutic candidates. The compound is also used in polymer and materials research for the development of photoactive or optoelectronic materials, including sensors and light-responsive systems. Additionally, 4,4'-Dibromobenzil is employed in photochemistry studies to investigate photophysical properties, photocrosslinking, and photoreactivity in both academic and industrial research.
Benefits
4,4'-Dibromobenzil offers several advantages that enhance its utility in chemical and materials applications. The presence of bromine substituents allows selective functionalization via cross-coupling, substitution, and other derivatization reactions. Its diketone structure provides a reactive site for condensation, cyclization, and photochemical transformations. The compound is chemically stable under standard laboratory conditions, enabling reliable handling and reproducibility in multi-step syntheses. Its dual bromine substituents and symmetrical structure also facilitate the preparation of symmetrical derivatives and functionalized materials, making it versatile for both synthetic and photochemical applications.
Conclusion
4,4'-Dibromobenzil is a versatile intermediate used in organic synthesis, pharmaceuticals, materials science, and photochemistry. Its reactive diketone core and bromine substituents enable diverse functionalization and photochemical transformations. Overall, 4,4'-Dibromobenzil supports efficient synthesis of halogenated and photoactive compounds, as well as the development of advanced materials and bioactive molecules.
Previous
2,6-Dimethylpiperidine丨CAS 504-03-0
Next