| 82707 |
Synonym: tetrabutylammonium acetate, 1-butanaminium, n,n,n-tributyl-, acetate, tetra-n-butylammonium acetate, tetrabutylazanium acetate, tetrabutyl ammonium acetate, 1-butanaminium, n,n,n-tributyl-, acetate 1:1, tetrabutylammonium ion acetate, 2-phosphonooxy acrylic acid cyclohexylamine salt 1:1, n,n,n-tributylbutan-1-aminiumacetate, tetrabutylazanium ethanoate
| Appearance | N/A |
| Content of Zinc | N/A |
| Boiling Point | N / A |
| Melting Point | 98°C |
| Vapor Pressure | N/A |
| % Volatile by Weight | N/A |
| Solubility in Water | N/A |
| Density | N/A |
| pH of Liquid, Typical (10% soln) | N/A |
| Specific Gravity Approx | N/A |
| Odor | N/A |
| pH | N/A |
| Flash Point | N/A |
| Ignition temperature | N/A |
| Lower exposure limit | N/A |
| Upper exposure limit | N/A |
| Color | White-Yellow |
| Formula Weight | 301.52 |
| Physical Form | Paste at 20°C |
| Chemical Name or Material | Tetrabutylammonium Acetate |
Classification of the substance or mixture
GHS Label elements, including precautionary statements
Hazards not otherwise classified (HNOC) or not covered by GHS
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Tetrabutylammonium acetate is used as a phase-transfer catalyst in organic synthesis. It helps facilitate reactions between water-soluble and organic-soluble compounds, especially in pharmaceutical and fine chemical production.
Tetrabutylammonium acetate is commonly used in nucleophilic substitution reactions, polymer chemistry, and peptide synthesis. It is valued for improving reaction efficiency, especially when working with ionic or non-polar compounds.
Tetrabutylammonium acetate properties include a solid or crystalline form, good solubility in polar organic solvents, and strong ionic conductivity. It is thermally stable and useful in a variety of organic reactions.
Tetrabutylammonium acetate is not highly water-soluble but dissolves well in many organic solvents. Its solubility profile makes it useful for phase-transfer processes and organic transformations in non-aqueous systems.
Tetrabutylammonium acetate is chosen for its catalytic efficiency and ability to enable difficult organic reactions. It is especially useful when working across different solvent phases or when milder reaction conditions are needed.