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Atomfair Butylphosphonic Acid C4H11O3P
Description Butylphosphonic Acid (CAS No. 3321-64-0) is a high-purity organophosphorus compound with the molecular formula C4H11O3P . This versatile chemical is widely used in research and industrial applications due to its unique phosphonic acid functional group, which enables strong chelating and coordinating properties. The compound is supplied as a stable, colorless to pale-yellow liquid or crystalline solid, with a purity grade suitable for advanced chemical synthesis, material science, and surface modification studies. Its IUPAC name, butylphosphonic acid , reflects its linear alkyl chain structure, making it an excellent intermediate for derivatization. Proper storage conditions (ambient to cool temperatures in a…
Description
Description
Butylphosphonic Acid (CAS No. 3321-64-0) is a high-purity organophosphorus compound with the molecular formula C4H11O3P. This versatile chemical is widely used in research and industrial applications due to its unique phosphonic acid functional group, which enables strong chelating and coordinating properties. The compound is supplied as a stable, colorless to pale-yellow liquid or crystalline solid, with a purity grade suitable for advanced chemical synthesis, material science, and surface modification studies. Its IUPAC name, butylphosphonic acid, reflects its linear alkyl chain structure, making it an excellent intermediate for derivatization. Proper storage conditions (ambient to cool temperatures in a tightly sealed container) ensure long-term stability. Butylphosphonic Acid is ideal for researchers working on metal-organic frameworks (MOFs), corrosion inhibitors, or flame retardant formulations.
- CAS No: 3321-64-0
- Molecular Formula: C4H11O3P
- Molecular Weight: 138.10
- Exact Mass: 138.04458121
- Monoisotopic Mass: 138.04458121
- IUPAC Name: butylphosphonic acid
- SMILES: CCCCP(=O)(O)O
- Synonyms: Butylphosphonic acid, 1-Butanephosphonic acid, BUTYLPHOSPHONATE, n-butyl phosphonic acid, NSC-38367
Application
Butylphosphonic Acid is primarily employed as a precursor in the synthesis of organophosphorus compounds, including ligands for catalysis and surface modifiers for nanomaterials. Its chelating properties make it valuable in metal ion extraction processes and as a corrosion inhibitor in industrial applications. Researchers also utilize it in the development of flame-retardant additives for polymers and coatings.
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