N-Butyl Pyridinium Bromide
- CAS No.874-80-6
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity N-Butyl Pyridinium Bromide is a versatile ionic liquid precursor used extensively in organic synthesis and electrochemical applications.
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Product Overview
N-Butyl Pyridinium Bromide represents a critical component in the realm of advanced organic synthesis and functional material science. As a quaternary ammonium salt derivative, this compound serves as a foundational building block for the development of specialized ionic liquids. Our manufacturing process ensures exceptional consistency, making it an ideal choice for researchers and industrial engineers requiring reliable reagents for electrochemical applications and catalytic processes. The compound is characterized by its stable pyridinium core structure, which facilitates various chemical transformations while maintaining thermal stability under standard operating conditions.
In the context of modern green chemistry, this substance plays a pivotal role as a solvent or catalyst support. Its unique physicochemical properties allow for enhanced reaction rates and selectivity in complex synthetic pathways. We prioritize the delivery of materials that meet stringent international standards, ensuring that every batch supports high-efficiency laboratory and production environments.
Technical Specifications
Our quality control team rigorously tests each production lot to guarantee compliance with specified parameters. The following table outlines the key physical and chemical properties verified through advanced analytical methods including NMR spectroscopy and thermogravimetric analysis.
| Parameter | Specification |
|---|---|
| CAS Number | 874-80-6 |
| Molecular Formula | C9H14BrN |
| Molecular Weight | 216.12 g/mol |
| Purity | > 99% |
| Appearance | White solid |
| Melting Point | 105 °C |
| Density | 0.963 g/cm³ |
| Water Content | < 1000 ppm |
| NMR Analysis | Passed |
Industrial Applications
The versatility of N-Butyl Pyridinium Bromide extends across multiple sectors within the chemical industry. Its primary utility lies in the preparation of more complex ionic liquids through anion exchange reactions. Additionally, it functions effectively as a phase transfer catalyst, enabling reactions between immiscible phases to proceed with greater efficiency.
- Organic Synthesis Intermediate: Used in the construction of heterocyclic compounds and pharmaceutical intermediates.
- Electrochemical Systems: Serves as a component in electrolytes for batteries and supercapacitors due to its ionic conductivity.
- Material Science: Employed in the modification of polymer surfaces and nanomaterial synthesis.
- Catalysis: Acts as a promoter in various coupling reactions and oxidation processes.
Quality Assurance and Manufacturing
With over a decade of dedicated experience in the research and production of ionic liquids, our facility maintains state-of-the-art capabilities ranging from gram-scale samples to multi-ton industrial supplies. Since 2007, we have established a robust supply chain that prioritizes safety, purity, and timely delivery. Our quality assurance protocol includes comprehensive impurity profiling, ensuring water content remains below critical thresholds to prevent hydrolysis in sensitive applications.
We understand the importance of documentation in regulated industries. Every shipment is accompanied by a Certificate of Analysis (COA) detailing batch-specific test results. Our technical support team is available to assist with formulation guidance and safety data interpretation, ensuring seamless integration into your existing processes.
