2,2-Difluoroethylamine: A Versatile Fluorinated Building Block
Unlock innovation in pharmaceuticals and agrochemicals with this essential fluorinated intermediate.
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2,2-Difluoroethylamine
2,2-Difluoroethylamine (CAS: 430-67-1) is a critical fluorinated amine that serves as a versatile building block in modern chemical synthesis. Its unique fluorine substitution pattern imparts desirable properties, making it invaluable for research and development in the pharmaceutical and agrochemical sectors.
- The synthesis of 2,2-difluoroethanamine is crucial for creating novel drug candidates.
- As a pharmaceutical intermediate, difluoroethylamine enhances the properties of active pharmaceutical ingredients.
- Explore the chemical properties of 2,2-difluoroethylamine for your R&D needs.
- Investigate the applications of CAS 430-67-1 in creating advanced materials.
Advantages Offered by the Product
Enhanced Bioavailability
Utilizing fluorinated amines for drug discovery can lead to improved metabolic stability and bioavailability, a key benefit when exploring 2,2-difluoroethanamine synthesis.
Tailored Reactivity
The specific chemical properties of 2,2-difluoroethylamine allow for precise control in various chemical reactions, aiding in the development of complex molecules.
Broad Application Scope
From pharmaceutical research to the development of new pesticides, the broad application scope of this compound makes it a sought-after chemical.
Key Applications
Pharmaceutical Research
As a vital pharmaceutical intermediate, 2,2-difluoroethylamine is instrumental in synthesizing new therapeutic agents with improved efficacy and pharmacokinetic profiles.
Agrochemical Development
The development of new pesticides often relies on fluorinated compounds like difluoroethylamine for enhanced stability and target specificity.
Materials Science
Exploring the use of fluorochemical building blocks like 2,2-difluoroethanamine can lead to the creation of advanced materials with unique properties.
Custom Synthesis
Businesses seeking custom synthesis of fluorinated compounds can leverage the availability and properties of 2,2-difluoroethylamine.