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OP6162 N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine (CAS No. 123847-85-8)

Catalog No
OP6162

N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine is a high-performance hole transport material used in perovskite solar cells, OLEDs, and other optoelectronic devices. Stanford Optics offers high-quality N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine with competitive pricing.

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N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine (CAS No. 123847-85-8)
N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine (CAS No. 123847-85-8)
Description
Specifications
Reviews

N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine Description

N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine is a high-performance hole transport material commonly used in OLEDs and other organic electronic devices. Its ability to efficiently transport holes, combined with good thermal stability and film-forming properties, makes it a key material in the production of advanced optoelectronic devices. However, its sensitivity to oxygen and moisture requires careful device encapsulation to ensure long-term stability.

N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine Specification

Appearance

light yellow powder

CAS No.

123847-85-8

Chemical Formula

C44H32N2

Molecular Weight

588.74

Purity

≥99.5%

Melting Point

279-283℃

 

N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine Applications

N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine Packaging

Our N,N′-Di(1-naphthyl)-N,N′-diphenyl-(1,1′-biphenyl)-4,4′-diamine is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

500mg/glass bottle, or customized.

FAQs

Q1: How does NPB improve the performance of OLEDs?

Answer: NPB improves OLED performance by efficiently transporting holes from the anode to the emissive layer. Its good energy level alignment with other materials in the OLED stack reduces recombination losses, leading to better light emission efficiency and increased device lifespan.

Q2: Is NPB sensitive to environmental conditions?

Answer: Yes, NPB can be sensitive to oxygen and moisture, which may cause it to oxidize and degrade over time. Proper encapsulation and device sealing are required to protect NPB-based devices from environmental exposure, ensuring long-term stability and performance.

Q3: How is NPB typically deposited in device fabrication?

Answer: NPB is typically deposited using vacuum thermal evaporation or solution processing (such as spin-coating). Both methods allow for the creation of uniform, thin films that are essential for the function of optoelectronic devices.

Specifications

Appearance

light yellow powder

CAS No.

123847-85-8

Chemical Formula

C44H32N2

Molecular Weight

588.74

Purity

≥99.5%

Melting Point

279-283℃

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