2,4-Dinitrophenol, moistened with water, ≥98.0%, 25g
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Specifications:
Application | Analysis | ||
Storage Temperature | Ambient | ||
Product Type | Laboratory Chemical | Forms | Powder |
Product Brand | CDH | ||
Product Grade | Analytical grade | Formula | C₆H₃(OH)(NO₂)₂ |
2,4-Dinitrophenol (DNP) is a high-purity aromatic compound, moistened for safe handling, and commonly used in organic synthesis and catalysis. The electron-withdrawing nitro groups make DNP a versatile reagent for forming esters, activating carboxylic acids, and supporting asymmetric catalysis. This compound is also valued for its role in nucleoside chemistry and reduction reactions.
Key Features
- ≥98% purity – Ensures consistent reactivity and product quality
- Moistened formulation – Reduces dust and enhances handling safety
- Activated phenol ring – Facilitates ester formation and nucleophilic substitution
- Versatile synthetic applications – Suitable for both catalytic and preparative reactions
- Stable under proper storage conditions
Specifications
Property | Value |
---|---|
Chemical Name | 2,4-Dinitrophenol |
CAS Number | 51-28-5 |
Molecular Formula | C₆H₃(OH)(NO₂)₂ |
Molecular Weight | 184.11 g/mol |
Form | Yellow crystalline powder (moistened with water) |
Purity | ≥98.0% |
Storage Conditions | Cool, dry, well-ventilated area |
Hazard Classification | Refer to SDS (highly toxic, handle with care) |
Applications
- Catalytic Reduction – Substrate in hydrogenation and reduction studies
- Carboxylic Acid Activation – Formation of dinitrophenyl esters for coupling reactions
- Acylation Chemistry – Used to synthesize esters in presence of isobutyric anhydride and Lewis acid catalysts
- Organocatalysis – Acts as a cocatalyst in asymmetric aldol reactions involving amino acid-derived catalysts
- Phosphoramidite Coupling – Alternative to tetrazole-based activators in nucleoside chemistry
Ordering Information
Product Code | Pack Size | Packaging Type |
---|---|---|
077365 | 25 g | Sealed bottle (moistened) |
2,4-Dinitrophenol (DNP), ≥98%, moistened for enhanced safety, is a highly useful reagent in advanced organic synthesis and catalysis. Its electron-deficient aromatic system and phenolic functionality allow it to participate in a wide array of synthetic transformations, making it indispensable for research laboratories and chemical manufacturers.