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Product Line: Electronic Chemicals

9H-Fluorene, 3-bromo-9,9-dimethyl-

CAS 1190360-23-6

Molecular structure of 9H-Fluorene, 3-bromo-9,9-dimethyl-

CAS · 1190360-23-6

01

Product Overview

9H-Fluorene, 3-bromo-9,9-dimethyl- 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 White solid powder
Purity (HPLC) 99% min
MP 63.0 ~ 67.0℃
03

Applications

 

 

1. Intermediate in Organic Synthesis

Used as a building block for synthesizing fluorene-based compounds, which are important in materials science and organic electronics.

The bromine atom at the 3-position allows for cross-coupling reactions (e.g., Suzuki, Heck, Stille) to introduce various functional groups.

2. Organic Electronics and Photonics

Fluorene derivatives are key components in organic light-emitting diodes (OLEDs), organic photovoltaics (OPVs), and other optoelectronic devices.

The 9,9-dimethyl substitution enhances thermal stability and photophysical properties.

3. Polymer Chemistry

Incorporated into conjugated polymers and small molecules for semiconducting applications.

Used to tailor polymer backbones for improved charge transport and emission characteristics.

04

Benefits

✅ Reactive Site for Functionalization

The bromine substituent enables diverse chemical modifications via palladium-catalyzed coupling reactions.

✅ Enhanced Stability

9,9-Dimethyl groups improve the thermal and photochemical stability of fluorene derivatives.

✅ Versatile Building Block

Facilitates the synthesis of advanced materials for electronics and photonics.

05

Conclusion

3-Bromo-9,9-dimethyl-9H-fluorene (CAS 1190360-23-6) is a valuable halogenated fluorene derivative widely used as a precursor in organic synthesis, particularly for developing functional materials in organic electronics. Its bromine substituent enables versatile coupling reactions, while the 9,9-dimethyl groups contribute to enhanced stability, making it a preferred intermediate in the design of advanced optoelectronic devices and conjugated polymers.

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