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AB44451

875664-41-8 | 3-Bromo-4,5-difluoroaniline

Packsize Purity Availability Price Discounted Price    Quantity
1g 95% in stock $55.00 $38.00 -   +
5g 95% in stock $143.00 $101.00 -   +
10g 97% in stock $286.00 $200.00 -   +
25g 97% in stock $651.00 $456.00 -   +
100g 97% in stock $1,879.00 $1,316.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AB44451
Chemical Name: 3-Bromo-4,5-difluoroaniline
CAS Number: 875664-41-8
Molecular Formula: C6H4BrF2N
Molecular Weight: 208.0035
MDL Number: MFCD08062370
SMILES: Nc1cc(F)c(c(c1)Br)F

 

Computed Properties
Complexity: 122  
Covalently-Bonded Unit Count: 1  
Heavy Atom Count: 10  
Hydrogen Bond Acceptor Count: 3  
Hydrogen Bond Donor Count: 1  
XLogP3: 2.1  

 

 

Upstream Synthesis Route
  • 3-Bromo-4,5-difluoroaniline is a versatile chemical compound that finds significant application in chemical synthesis processes. One of its primary uses is as a building block in the creation of pharmaceutical compounds. The presence of the bromine and difluoro groups in its molecular structure imparts unique reactivity, allowing for the introduction of specific functionalities into target molecules during drug development.Furthermore, 3-Bromo-4,5-difluoroaniline serves as a key intermediate in the synthesis of agrochemicals. Its ability to undergo diverse chemical transformations makes it valuable in the production of crop protection agents and pesticides. By incorporating this compound into the synthetic pathway, chemists can tailor the properties of the final product to optimize its efficacy and environmental impact.Additionally, this compound plays a crucial role in the development of functional materials such as liquid crystals and dyes. Its structural features contribute to the desired properties of these materials, enabling the synthesis of high-performance products for various industrial applications.chemists can utilize 3-Bromo-4,5-difluoroaniline to introduce specific chemical functionalities into target molecules, enabling precise control over the synthetic process and resulting in the creation of diverse compounds with tailored properties.
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