3-Bromo-4-Formylpyridine Technical Guide
Table of Contents
1. Product Specifications & Comparative Analysis
| Parameter | 3-Bromo-4-formylpyridine | Analogous Compounds |
|---|---|---|
| Molecular Formula | C6H4BrNO | C5H3BrIN (3-Bromo-4-iodopyridine) |
| Molecular Weight | 186.01 g/mol | 283.89 g/mol |
| Structural Features | Pyridine derivative with bromine (position 3) and formyl group (position 4) | Halogen-substituted pyridines with varied electronic properties |
2. Functional Applications
This heterocyclic compound serves as critical building block in:
- Pharmaceutical intermediates for kinase inhibitors
- Agrochemical precursors
- Coordination chemistry ligands
- Organic electronic materials
3. Operational Best Practices
Recommended protocols for handling:
- Storage: Maintain at 2-8°C in inert atmosphere
- Reaction Compatibility: Suitable for Suzuki couplings and nucleophilic substitutions
- Safety: Use PPE including nitrile gloves and chemical goggles
4. Industry Implementation Cases
- API synthesis for tyrosine kinase inhibitors
- Cross-coupling reactions in OLED material production
- Ligand synthesis for transition metal catalysts
5. Client Success Stories
Case 1: Leading pharmaceutical company utilized this compound in developing third-generation EGFR inhibitors, achieving 92% yield in key coupling reactions.
Case 2: Advanced materials manufacturer incorporated derivative compounds in organic semiconductor production, enhancing charge mobility by 40%.
6. Procurement Consultation
For technical specifications, bulk pricing, and custom synthesis options:
Contact:
Email: info@vivalr.com
Tel: (86) 15866781826


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