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Specifications
| Appearance | Colorless to light yellow transparent liquid |
| Purity | 99% min |
| Moisture content | 0.3% max |
Transport Information
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Parameter |
Specification |
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UN Number |
1993 |
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Class |
3 |
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Packing Group |
III |
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H.S. Code |
2903299090304 |
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Stability & Reactivity |
The product is chemically stable under standard ambient conditions. |
|
Storage |
Keep container tightly closed in a dry and well-ventilated place. |
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Condition to Avoid |
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Package |
Applications
1-Bromo-3-fluoropropane is a valuable compound used primarily in organic synthesis and chemical research, where its unique combination of bromine and fluorine atoms on a three-carbon chain opens up various applications. It is primarily employed as a versatile intermediate in the synthesis of more complex molecules, particularly in the pharmaceutical and agrochemical industries. In pharmaceutical research, it serves as a building block for the development of biologically active compounds, including potential drug candidates targeting various therapeutic areas. Its reactivity makes it a useful component in the creation of fluorinated molecules, which can enhance the pharmacokinetics and bioavailability of drugs. In the field of agrochemicals, 1-Bromo-3-fluoropropane is used in the synthesis of herbicides, fungicides, and insecticides, where the fluorine atom imparts unique properties to the final product, such as increased stability and effectiveness. Furthermore, this compound is applied in the development of specialty polymers and materials, particularly those requiring fluorine incorporation for enhanced chemical resistance or physical properties. Its role as a chemical intermediate extends to a wide range of industries, demonstrating its functional versatility.
Benefits
The main benefits of 1-Bromo-3-fluoropropane arise from its reactivity and its ability to introduce both bromine and fluorine atoms into organic molecules. The bromine atom facilitates nucleophilic substitution reactions, while the fluorine atom can enhance the chemical and thermal stability of the final compound. In pharmaceuticals, the fluorine atom in particular can improve the metabolic stability and bioactivity of drug molecules, leading to more effective and longer-lasting treatments. In agrochemicals, the combination of bromine and fluorine allows for the development of more potent pesticides and herbicides, which are more resistant to environmental degradation and offer better performance in controlling pests and plant diseases. Additionally, the fluorine substitution can alter the physical properties of materials, such as enhancing the solubility, chemical resistance, and durability of polymers and coatings in industrial applications. The ability of 1-Bromo-3-fluoropropane to modify the chemical properties of complex molecules makes it a valuable tool in both research and industrial manufacturing, contributing to the creation of more efficient, stable, and functional products.
Conclusion
1-Bromo-3-fluoropropane (CAS 352-91-0) is a highly versatile chemical intermediate with significant applications in the pharmaceutical, agrochemical, and materials science industries. Its key benefits stem from the reactivity of the bromine and fluorine atoms, which enable the synthesis of a wide range of bioactive and functional molecules. In drug development, it enhances pharmacological properties, while in agrochemicals, it contributes to more effective and durable pesticides. Its incorporation into polymers and specialty materials improves product performance by enhancing stability and resistance to chemical degradation. Overall, 1-Bromo-3-fluoropropane plays an essential role in advancing chemical synthesis and product innovation across various industrial sectors.

