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Product Line: Electronic Chemicals

2-broMobenzob-naphtho2,3-dfuran

CAS 1627917-16-1

Molecular structure of 2-broMobenzob-naphtho2,3-dfuran

CAS · 1627917-16-1

01

Product Overview

2-broMobenzob-naphtho2,3-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 solid
Purity (HPLC): 99.9% min
Loss on drying: 0.5% max
03

Applications

 

 

1. Organic Synthesis

Key Intermediate: Used as a synthetic building block in the development of complex organic molecules, especially in the pharmaceutical and materials science sectors.

Cross-Coupling Reactions: The bromine atom at the 2-position makes it highly suitable for Suzuki, Sonogashira, Stille, or Heck coupling reactions, enabling introduction of diverse aryl or alkynyl groups.

2. Material Science

Functional Aromatic Framework: Due to its rigid planar structure and π-conjugation, this compound is useful in designing organic semiconductors, OLEDs, and photonic materials.

Donor–Acceptor Systems: Acts as part of donor–acceptor chromophores in fluorescent dyes or electronic devices.

3. Pharmaceutical Research

Potential Scaffold: The benzo-fused furan core is a pharmacophore present in various bioactive molecules, including anticancer and anti-inflammatory agents. This compound can be used to design analogues for structure–activity relationship (SAR) studies.

04

Benefits

 

 

Versatile Reactivity: Bromine allows for a wide variety of derivatizations via palladium-catalyzed couplings.

Aromatic Rigidity: Useful for tuning optical and electronic properties in advanced material systems.

Structural Uniqueness: The fused-ring furan system offers distinct electronic characteristics attractive for medicinal chemistry and materials applications.

05

Conclusion

2-Bromo-benzo[b]naphtho[2,3-d]furan (CAS 1627917-16-1) is a versatile and high-value intermediate widely used in organic synthesis, materials science, and pharmaceutical development. Its reactivity, combined with a rigid and conjugated core structure, makes it ideal for creating functional materials and complex bioactive molecules. Whether advancing next-generation optoelectronics or supporting novel drug discovery efforts, this compound offers both chemical flexibility and strategic importance.

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