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Product Line: Electronic Chemicals

3-bromodibenzob,dfuran

CAS 26608-06-0

Molecular structure of 3-bromodibenzob,dfuran

CAS · 26608-06-0

01

Product Overview

3-bromodibenzob,dfuran is a high-purity oled-materials supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Off-white powder
Purity 99.5%min (HPLC)
03

Applications

Pharmaceutical and Chemical Research

3-bromodibenzob,dfuran丨26608-06-0 is an important intermediate in the synthesis of pharmaceutical compounds. It is used in medicinal chemistry for developing new drugs, particularly those targeting neurological and inflammatory conditions.

Organic Synthesis

As a brominated heterocyclic compound, it serves as a key building block in the synthesis of various organic molecules, including agrochemicals, dyes, and advanced materials.

Material Science

It is used in the production of functional materials, including liquid crystals, OLEDs, and conductive polymers. Its dibenzofuran core provides stability and electronic properties that enhance the performance of these materials.

Environmental and Analytical Chemistry

It is sometimes used as a reference compound or reactant in environmental studies related to polycyclic aromatic compounds and halogenated organic pollutants.

04

Benefits

Versatility in Chemical Synthesis

3-Bromodibenzofuran is a useful intermediate that enables the production of complex molecules in pharmaceuticals, agrochemicals, and materials science.

Structural Stability

Its fused aromatic system contributes to high chemical stability, making it suitable for applications in advanced materials and electronics.

Reactivity for Functionalization

The bromine atom allows for further chemical modifications, such as cross-coupling reactions, which expand its utility in organic synthesis.

05

Conclusion

3-bromodibenzob,dfuran丨26608-06-0 is a valuable intermediate with applications in pharmaceuticals, organic synthesis, and materials science. Its stability and functional reactivity make it an essential component in the development of new chemicals and advanced materials.

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