Trifluoroacetaldehyde Hydrate (75% Aq. Sol.)
- CAS No.421-53-4
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity Trifluoroacetaldehyde Hydrate (75% Aq. Sol.) designed for advanced pharmaceutical and organic synthesis applications. Reliable supply with strict quality control.
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Product Overview
Trifluoroacetaldehyde Hydrate, commercially supplied as a stable 75% aqueous solution, represents a critical fluorinated building block within the realm of advanced organic synthesis and medicinal chemistry. As the hydrated form of trifluoroacetaldehyde, this compound offers enhanced handling safety and superior reactivity profiles essential for modern pharmaceutical and agrochemical development. Our manufacturing process ensures consistent quality and batch-to-batch reproducibility, making it an ideal choice for researchers and industrial producers seeking reliable fluorine incorporation strategies.
The unique electronic properties imparted by the trifluoromethyl group make this intermediate invaluable for modifying the metabolic stability, lipophilicity, and binding affinity of target molecules. By utilizing our high-purity grade, chemists can achieve superior yields in heterocycle formation and condensation reactions. We adhere to strict international quality standards, providing comprehensive documentation including Certificates of Analysis (COA) for every batch to ensure regulatory compliance.
Chemical Properties and Stability
This fluorinated intermediate exists in equilibrium with its aldehyde form, but the hydrate structure provides significant stability advantages during storage and transportation. The 75% concentration is optimized to maintain this equilibrium while minimizing water content that could interfere with specific anhydrous reaction conditions downstream. The compound exhibits a distinct density and boiling point profile that facilitates easy separation and purification during synthesis workflows.
Our quality control laboratory employs advanced gas chromatography (GC) and high-performance liquid chromatography (HPLC) techniques to monitor impurity levels rigorously. Key impurities such as trifluoroethanol and trifluoroacetic acid are kept to minimal levels to prevent side reactions in sensitive catalytic processes. This commitment to purity ensures that downstream synthesis steps proceed without unexpected inhibition or byproduct formation.
Key Specifications
Our production facility employs rigorous analytical testing to guarantee that each shipment meets the specified purity thresholds. The 75% aqueous formulation is optimized for stability during transport and storage while maintaining high reactivity upon use. Below are the typical physical and chemical parameters observed in our standard production runs.
| Parameter | Specification |
|---|---|
| Appearance | Colorless to Light Yellow Liquid |
| Assay (GC) | ≥ 75.0% |
| Moisture Content | ≤ 25.0% |
| Trifluoroethanol Impurity | ≤ 0.1% |
| Trifluoroacetic Acid (TFA) | ≤ 0.1% |
| Other Single Impurity | ≤ 0.1% |
| Packing | 25 kg/Drum or Customized |
Industrial Applications
This fluorinated intermediate serves as a versatile precursor in the synthesis of complex pharmaceutical APIs and fine chemicals. Its primary utility lies in the construction of trifluoromethylated heterocycles, which are prevalent in contemporary medicinal chemistry. The compound is frequently employed in condensation reactions to form imines, enamines, and various nitrogen-containing scaffolds.
- Pharmaceutical Intermediate Synthesis: Used in the development of antiviral and anticancer agents where fluorine substitution enhances bioavailability and metabolic resistance.
- Agrochemical Production: Essential for creating robust pesticide and herbicide structures resistant to environmental degradation and enzymatic breakdown.
- Organic Fluorine Chemistry: Acts as a key reagent for introducing trifluoromethyl groups into organic frameworks to modify electronic properties.
- Research and Development: Supports academic and industrial labs in exploring new fluorinated molecular architectures and structure-activity relationships.
Storage and Handling
Proper storage is crucial to maintain the integrity of Trifluoroacetaldehyde Hydrate. The product should be kept in a tightly closed container within a cool, dry, and well-ventilated area. It is classified as a corrosive substance; therefore, personnel must utilize appropriate personal protective equipment (PPE) including chemical-resistant gloves and eye protection during handling. Avoid exposure to heat, sparks, or open flames. Incompatible substances should be stored separately to prevent hazardous reactions. Our logistics team ensures compliant packaging for global shipment, adhering to all relevant transportation regulations for hazardous chemicals.
