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Product Line: Electronic Chemicals

9-(2-Naphthyl)anthracene

CAS 7424-72-8

Molecular structure of 9-(2-Naphthyl)anthracene

CAS · 7424-72-8

01

Product Overview

9-(2-Naphthyl)anthracene 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: Yellow powder
Purity (HPLC): 99.5% min
Melting Point: 203.0~207.0 °C
03

Applications

9-(2-Naphthyl)anthracene is widely used as a light-emitting and charge-transport material in organic electronic devices such as OLEDs (organic light-emitting diodes), OFETs (organic field-effect transistors), and photovoltaic cells. Its rigid polyaromatic framework allows efficient π-conjugation, promoting high charge mobility and luminous efficiency. In OLEDs, it functions as a blue-emitting material or as a host component in the emissive layer to enhance device brightness and lifespan. It is also utilized in organic photonics and laser materials, where its strong fluorescence and high quantum yield are advantageous. In addition, it finds application in research on molecular electronics, thin-film semiconductors, and photoluminescent coatings.

04

Benefits

The benefits of 9-(2-naphthyl)anthracene stem from its exceptional optical, electronic, and thermal performance. The compound exhibits strong blue fluorescence with high photostability, making it suitable for devices requiring long operational lifetimes. Its extended conjugated system ensures effective charge transport and light emission, contributing to enhanced energy efficiency in optoelectronic devices. Moreover, its high thermal and oxidative stability allow it to maintain structural integrity under processing and operational conditions. It can be easily blended or doped with other organic semiconductors to fine-tune emission characteristics and improve device performance.

05

Conclusion

In summary, 9-(2-naphthyl)anthracene is a high-performance organic semiconductor valued for its strong luminescence, stability, and versatility in optoelectronic applications. It plays a key role in OLED technology and other organic electronic systems, serving as both an emissive and host material. Its combination of optical efficiency, durability, and processability makes it an essential compound in the advancement of next-generation display and lighting technologies.

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