Interesting facts
Interesting Facts about N-ethyl-2-fluoro-N-(2,4,5-trichlorophenyl)acetamide
N-ethyl-2-fluoro-N-(2,4,5-trichlorophenyl)acetamide is a fascinating compound that showcases the intricacies of chemical synthesis and the relevance of functional groups in organic chemistry. Here are some intriguing aspects of this compound:
- Pharmaceutical Potential: This compound can act as an intermediate in the synthesis of various pharmaceuticals, particularly those aimed at treating neurological disorders.
- Halogen Chemistry: The presence of the fluorine and multiple chlorine atoms in its structure enhances the compound's biological activity, stability, and lipophilicity, making it a prime candidate for drug development.
- Environmental Impact: Compounds with halogen substituents can pose environmental concerns. The persistence of chlorinated compounds in ecosystems is a significant topic in environmental chemistry.
- Structure-Activity Relationship (SAR): Understanding how modifications in the structure affect biological outcomes is crucial. The specific arrangement of the ethyl group and halogens is key to its efficacy.
- Research Applications: Due to its unique combination of properties, this compound is often a subject in research studies focused on developing better agrochemicals or compounds that could manage pests more effectively.
In summary, N-ethyl-2-fluoro-N-(2,4,5-trichlorophenyl)acetamide represents the intersection of organic chemistry, pharmacology, and environmental science. As scientists continue to explore the utility of such compounds, the impact on multiple fields remains significant.
Synonyms
10016-10-1
BRN 2135828
N-Ethyl-2-fluoro-2',4',5'-trichloroacetanilide
ACETANILIDE, N-ETHYL-2-FLUORO-2',4',5'-TRICHLORO-
DTXSID90142988
DTXCID1065479
Solubility of N-ethyl-2-fluoro-N-(2,4,5-trichlorophenyl)acetamide
The solubility of N-ethyl-2-fluoro-N-(2,4,5-trichlorophenyl)acetamide can be influenced by various factors. Here are key points to consider:
In conclusion, while specific solubility values may not be readily available for this compound, one can generally anticipate enhanced solubility in nonpolar or polar organic solvents compared to aqueous environments. As a result, one must consider the chemical environment and the operational conditions when evaluating solubility for practical applications.