Introduction of CAS:844679-02-3 | BABPA-B
9-Bromo-10-(3-phenylphenyl)anthracene (BPPA) is a polyaromatic hydrocarbon (PAH) that is widely used in scientific research, particularly in the study of the biochemical and physiological effects of PAHs. BPPA has a number of distinct advantages over other PAHs, including its strong fluorescence, low toxicity, and relatively low cost.
Specification of CAS:844679-02- 3 | BABPA-B
|
ITEMS |
SPECIFICATION |
|
Melt point |
122 °C |
|
Purity |
98% |
|
Boiling point |
541.3±19.0 °C(Predicted) |
|
Density |
1.344±0.06 g/cm3(Predicted) |
|
Form |
powder crystal |
|
color |
Pale yellow to yellow to green |
Research Application of CAS:844679-02-3 | BABPA-B
Photophysical Characterization and Applications in OLEDs
Anthracene derivatives, like 9-Bromo-10-(3-phenylphenyl)anthracene, are frequently utilized in organic light-emitting diodes (OLEDs) and upconversion processes. A study by Gray et al. (2015) highlights the use of 9,10-substituted anthracenes in OLEDs and triplet-triplet annihilation upconversion systems. These molecules are chosen for their inherent optical properties and the ability to alter parts of the molecule to obtain new physical attributes without significant impact on UV/Vis absorption. The study also explores the fluorescence properties affected by different substituents, impacting the efficiency of these materials in OLED applications (Gray et al., 2015).
Blue-Emitting Anthracenes for LED Devices
Danel et al. (2002) synthesized a series of 2-tert-butyl-9,10-bis(bromoaryl)anthracenes, from which stable blue-light-emitting diodes were constructed. These compounds, including 9-Bromo-10-(3-phenylphenyl)anthracene, exhibit high thermal decomposition temperatures and form stable glasses, making them suitable for use in blue-light-emitting LED devices (Danel et al., 2002).
OLED Host and Hole-Transporting Materials
Sarsah et al. (2013) demonstrated that electroluminescent 9,10-diaryl anthracenes, including derivatives like 9-Bromo-10-(3-phenylphenyl)anthracene, are promising materials for OLEDs. These compounds offer high thermal stability and wide band gaps, making them particularly effective for blue OLEDs. The study highlights their suitability as host and hole-transporting materials in organic electroluminescence (Sarsah et al., 2013).
Photocatalytic Fluoroalkylation
Noto et al. (2018) explored the use of anthracene derivatives in photocatalytic fluoroalkylation. They synthesized well-defined 9,10-bis(di(p-tert-butylphenyl)amino)anthracene, a catalyst for radical fluoroalkylation under visible light irradiation. This study highlights the potential of such anthracene-based photocatalysts in generating various fluoroalkyl radicals, pointing to their application in organic synthesis and material science (Noto et al., 2018).


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