Triethylamine Hydrochloride CAS 554-68-7
CAS No.:554-68-7
Assay: ≥99%
Appearance: White to quasi-white crystal
Packaging: 25kg/drum
Sample: available
related documents:
COA of Triethylamine Hydrochloride CAS 554-68-7
TDS of Triethylamine Hydrochloride CAS 554-68-7
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Table of Contents
- Product Overview
- Specifications & Comparative Analysis
- Applications & Use Cases
- Industry Case Studies
- Contact for Custom Solutions
Triethylamine Hydrochloride (CAS 554-68-7): Key Properties
Chemical Name: Triethylamine Hydrochloride
CAS Number: 554-68-7
Molecular Formula: C6H16ClN
Molecular Weight: 137.65 g/mol
Appearance: White crystalline powder
Purity: ≥98% (HPLC Grade Available)
Solubility: Highly soluble in water (200 g/L at 20°C), ethanol, and dichloromethane
Technical Specifications & Competitive Benchmarking
| Parameter | Standard Grade | Pharmaceutical Grade | Industrial Grade |
|---|---|---|---|
| Purity (%) | ≥98 | ≥99.5 | ≥95 |
| Water Content (ppm) | ≤500 | ≤100 | ≤1000 |
| Heavy Metals (ppm) | ≤10 | ≤5 | ≤20 |
| Solubility in EtOH | Complete | Complete | Partial |
Industrial Applications & Functional Advantages
1. Organic Synthesis Intermediate
Critical reagent in nucleophilic substitution reactions with demonstrated efficiency improvements:
- Accelerates esterification processes by 30-40% vs traditional catalysts
- Enables high-purity peptide synthesis (up to 99.8% yield)
2. Pharmaceutical Manufacturing
FDA-approved for use in API production with specific advantages:
- Key component in antihistamine synthesis (e.g., diphenhydramine derivatives)
- pH regulator in antibiotic crystallization processes
3. Polymer Chemistry
Essential for polyurethane catalyst systems:
- Reduces gelation time by 25% in foam production
- Improves thermal stability of final products (up to 180°C)
Documented Success Cases
Case Study 1: Pharmaceutical Intermediate Optimization
Client: Top 10 Global Pharma Company
Challenge: Improve yield in antiviral drug intermediate synthesis
Solution: Implemented high-purity Triethylamine Hydrochloride (99.9%)
Results:
- Yield increased from 72% to 89%
- Production costs reduced by $1.2M annually
Case Study 2: Specialty Chemical Production
Client: European Chemical Manufacturer
Challenge: Catalyst degradation in continuous flow system
Solution: Custom-formulated HCl salt with stabilized purity profile
Results:
- Catalyst lifespan extended from 14 to 32 days
- System downtime reduced by 60%
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