High Purity Dibromo Terfluorene Derivative for Advanced OLED and OPV Applications

Discover the cutting-edge Dibromo Hexaoctyl Terfluorene, a key component for next-generation OLED and OPV technologies. NINGBO INNO PHARMCHEM CO.,LTD. is your trusted manufacturer and supplier in China, offering exceptional quality and competitive pricing for your advanced material needs.

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Key Advantages for Your Research and Production

Exceptional Purity for Reliable Performance

Our Dibromo Hexaoctyl Terfluorene is manufactured to a minimum purity of 97%, ensuring predictable and high-performance results in your OLED and OPV formulations. As a dedicated supplier, we prioritize quality control.

Enhanced Solubility and Processability

The long octyl chains integrated into this terfluorene derivative significantly improve its solubility in common organic solvents, facilitating easier processing and deposition for large-scale manufacturing of electronic devices.

Tailored Electronic and Optical Properties

The strategic placement of bromine atoms on the terfluorene backbone offers excellent electronic properties and opens avenues for further chemical synthesis, enabling customization for specific application requirements.

Applications Driving Innovation

OLED Materials

Utilize Dibromo Hexaoctyl Terfluorene as a critical component in the emissive or charge transport layers of Organic Light-Emitting Diodes (OLEDs) for brighter, more efficient displays. Find competitive pricing from our manufacturer.

OPV Materials

Incorporate this terfluorene derivative into organic photovoltaic (OPV) cells to enhance light absorption and charge separation, contributing to higher power conversion efficiencies. Explore bulk purchase options from our reliable supplier.

Organic Electronics

Beyond OLEDs and OPVs, this compound is valuable for other organic electronic applications, including organic field-effect transistors (OFETs) and sensors, offering versatile solutions.

Advanced Material Synthesis

Researchers and formulators can leverage the reactivity of the bromine groups for synthesizing novel, functionalized organic materials with tailored properties for emerging technologies.