3-Bromo-2-Fluorophenol CAS 161957-56-8 Boiling Point 207.4 ± 20.0°C
3-Bromo-2-Fluorophenol, CAS 161957-56-8, Boiling Point 207.4 ± 20.0°C
3-Bromo-2-fluorophenol has extensive applications in chemical synthesis and research. It can be used as an intermediate in organic synthesis, participating in esterification, functionalization of Aromatic compound and other reactions.Moreover, 3-bromo-2-fluorophenol is utilized in drug synthesis and pesticide synthesis to produce molecules with targeted activity and biological function. It serves as a fundamental building block for designing and synthesizing compounds that possess specific pharmacological or pesticidal properties. Additionally, in the realm of chemical research, it serves as a valuable starting material for investigating specific reactions and designing novel catalysts to facilitate various chemical transformations and enhance synthetic efficiency.
Specification
| product Name | 3-Bromo-2-fluoro-phenol |
| Boiling point: | 207.4±20.0 °C(Predicted) |
| Molecular Formula | C6H4BrFO |
| Molecular Weight | 191 |
| Appearance | solid |
| Density: | 1.764±0.06 g/cm3(Predicted) |
| Storage conditions: | Sealed in dry,Room Temperature |
| Acid dissociation constant (pKa): |
2.88 ± 0.10 (PredictChemalbookcted) |
| Color: | White |
| InchiKey: | UVKURTLVTLLRSSM-UHFFAOYSA-N |
| CAS database: | 161957-56-8 (CASDataBaseReference) |
| MOL File: | 156682-53-0.mol |
Applications
3-Bromo-2-fluorophenol has various uses in chemical synthesis and research. Here are some common uses:
- Organic synthesis: As an organic synthesis intermediate, 3-bromo-2-fluorophenol can participate in a variety of reactions, such as esterification, functionalization of Aromatic compound, etc. Its reactivity makes it an important part of building complex organic molecular structures.
- Drug synthesis: 3-bromo-2-fluorophenol plays a crucial role in drug synthesis. It can be used as a starting material or intermediate for the preparation of drug molecules. By utilizing its chemical properties and activity, drugs with specific biological and pharmacological effects can be synthesized.
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Synthesis of pesticides: The distinct chemical properties of 3-bromo-2-fluorophenol make it highly valuable in the synthesis of pesticides. It finds extensive use as a key component or intermediate in the creation of pesticide molecules, allowing for effective control and prevention of harmful organisms such as insects and pathogenic microorganisms.
Chemical research: The versatile nature of 3-bromo-2-fluorophenol contributes to its widespread application in chemical research. Serving as a crucial starting material, it enables the investigation of novel chemical reactions, development of catalysts, and optimization of synthesis routes. Leveraging its reactivity opens up opportunities to explore and create innovative chemical methodologies and compounds.

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