2,4-Difluoro-5-nitrotoluene
96%
- Product Code: 39025
CAS:
179011-38-2
Molecular Weight: | 173.1169 g./mol | Molecular Formula: | C₇H₅F₂NO₂ |
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EC Number: | MDL Number: | MFCD16620288 | |
Melting Point: | Boiling Point: | ||
Density: | Storage Condition: | room temperature |
Product Description:
2,4-Difluoro-5-nitrotoluene is primarily used as an intermediate in the synthesis of various organic compounds, particularly in the pharmaceutical and agrochemical industries. Its structure, featuring both nitro and fluoro substituents, makes it a versatile building block for creating more complex molecules.
In pharmaceuticals, it is often employed in the development of active pharmaceutical ingredients (APIs) due to its ability to introduce fluorine atoms into target molecules, which can enhance their biological activity, stability, and bioavailability. Additionally, it is utilized in the production of agrochemicals, such as herbicides and pesticides, where the nitro group can act as a precursor for further chemical transformations.
Its role in organic synthesis also extends to the creation of dyes, pigments, and other specialty chemicals, where its unique substitution pattern allows for precise modifications to achieve desired properties.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.100 | 10-20 days | ฿1,620.00 |
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2,4-Difluoro-5-nitrotoluene
2,4-Difluoro-5-nitrotoluene is primarily used as an intermediate in the synthesis of various organic compounds, particularly in the pharmaceutical and agrochemical industries. Its structure, featuring both nitro and fluoro substituents, makes it a versatile building block for creating more complex molecules.
In pharmaceuticals, it is often employed in the development of active pharmaceutical ingredients (APIs) due to its ability to introduce fluorine atoms into target molecules, which can enhance their biological activity, stability, and bioavailability. Additionally, it is utilized in the production of agrochemicals, such as herbicides and pesticides, where the nitro group can act as a precursor for further chemical transformations.
Its role in organic synthesis also extends to the creation of dyes, pigments, and other specialty chemicals, where its unique substitution pattern allows for precise modifications to achieve desired properties.
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