2-Fluoro-5-(Trifluoromethoxy)Benzylamine
≥98%
- Product Code: 187837
CAS:
886498-13-1
Molecular Weight: | 209.14 g./mol | Molecular Formula: | C₈H₇F₄NO |
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EC Number: | MDL Number: | MFCD04115895 | |
Melting Point: | Boiling Point: | ||
Density: | Storage Condition: | Room temperature, dryness, inert gas storage |
Product Description:
Used as a key intermediate in the synthesis of pharmaceuticals, particularly in the development of fluorinated active pharmaceutical ingredients (APIs) where enhanced metabolic stability and bioavailability are desired. Its structure supports the creation of compounds with improved binding affinity to biological targets, making it valuable in medicinal chemistry. Commonly employed in the preparation of neuroactive agents and central nervous system (CNS) drugs due to its ability to cross the blood-brain barrier. Also utilized in agrochemicals for designing herbicides and pesticides with increased environmental persistence and target specificity. The presence of fluorine atoms contributes to lipophilicity and resistance to oxidative degradation, which are advantageous in optimizing drug half-life and efficacy.
Sizes / Availability / Pricing:
Size | Availability | Price | Quantity |
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1.000 | 10-20 days | $170.71 |
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2-Fluoro-5-(Trifluoromethoxy)Benzylamine
Used as a key intermediate in the synthesis of pharmaceuticals, particularly in the development of fluorinated active pharmaceutical ingredients (APIs) where enhanced metabolic stability and bioavailability are desired. Its structure supports the creation of compounds with improved binding affinity to biological targets, making it valuable in medicinal chemistry. Commonly employed in the preparation of neuroactive agents and central nervous system (CNS) drugs due to its ability to cross the blood-brain barrier. Also utilized in agrochemicals for designing herbicides and pesticides with increased environmental persistence and target specificity. The presence of fluorine atoms contributes to lipophilicity and resistance to oxidative degradation, which are advantageous in optimizing drug half-life and efficacy.
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