2-Bromo-9,10-bis(2-naphthalenyl)anthracene Comprehensive Guide
Table of Contents
- Product Specifications & Comparative Analysis
- Functional Applications
- Operational Case Studies
- Client Implementation Examples
- Procurement Consultation
Product Specifications & Comparative Analysis
| Parameter | Specification | Alternative Product |
|---|---|---|
| CAS Number | 474688-76-1 | 955123-68-9 (Fluorenyl variant) |
| Molecular Formula | C34H21Br | C44H33Br |
| Purity | ≥97% | Research-grade (Undisclosed) |
| Storage | Ambient conditions | -20°C (Fluorenyl variant) |
Functional Applications
This brominated anthracene derivative demonstrates exceptional performance in:
- Organic Light-Emitting Diodes (OLED) development
- Photovoltaic material research
- Advanced luminescent probes
- Charge transport layer engineering
Operational Case Studies
Case 1: OLED Efficiency Enhancement
A leading display manufacturer achieved 18% efficiency improvement in blue-emitting OLED stacks through strategic doping with 2-Bromo-9,10-bis(2-naphthalenyl)anthracene.
Case 2: Photostability Research
University researchers utilized this compound to develop UV-resistant organic semiconductors with 500-hour operational stability under intense illumination.
Client Implementation Examples
Electronics Conglomerate A
Implemented in flexible display production line:
- 30% reduction in manufacturing defects
- 15% improvement in color gamut
- Annual savings: $2.4M
Research Institute B
Advanced materials development program:
- 2 patents filed in 2024
- Published in Nature Materials (IF: 47.8)
- Commercialization partnership secured
Procurement Consultation
For technical specifications, bulk pricing, or custom synthesis requirements:
Contact our materials science team:
Email: info@vivalr.com
Tel: (86) 15866781826
Standard lead time: 3-5 business days
Global shipping available
Custom purity options up to 99.9%


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