Product Name:Benzamide, N-(5-amino-2-fluorophenyl)-4-(1,1-dimethylethyl)-

IUPAC Name:N-(5-amino-2-fluorophenyl)-4-tert-butylbenzamide

CAS:926195-88-2
Molecular Formula:C17H19FN2O
Purity:95%+
Catalog Number:CM635290
Molecular Weight:286.35

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Product Details

CAS NO:926195-88-2
Molecular Formula:C17H19FN2O
Melting Point:-
Smiles Code:CC(C)(C)C1=CC=C(C=C1)C(=O)NC1=C(F)C=CC(N)=C1
Density:
Catalog Number:CM635290
Molecular Weight:286.35
Boiling Point:
MDL No:
Storage:

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Product Other Information

Product Overview N-(5-Amino-2-fluorophenyl)-4-(tert-butyl)benzamide, also known as N-A2F-4-TB, is a fluorinated amide that has been widely studied due to its versatile applications in various scientific fields.
Synthesis Method N-(5-Amino-2-fluorophenyl)-4-(tert-butyl)benzamide is synthesized through a series of steps, beginning with the reaction of 5-amino-2-fluorophenol and tert-butyl bromide. This reaction produces an intermediate, which is then reacted with a solution of sodium amide in liquid ammonia. The resulting product is then collected and purified by recrystallization.
Chemical Properties It is relatively inexpensive and non-toxic, making it an ideal starting material for the synthesis of a variety of compounds. However, there are also some limitations to its use in laboratory experiments. For example, it is not suitable for use in the synthesis of certain compounds, such as peptides, due to its lack of reactivity.
Synthesis and Application It has been used as a starting material for the synthesis of a number of compounds, including heterocyclic compounds, peptides, and other organic molecules. It has also been used in the study of the mechanism of action and the biochemical and physiological effects of these compounds. Additionally, it has been used in the development of new drugs, as well as in the study of drug metabolism and pharmacokinetics.
Future Directions It could be used in the development of new drugs and in the study of drug metabolism and pharmacokinetics. Additionally, it could be used in the synthesis of new compounds, such as peptides, and in the study of the mechanism of action and the biochemical and physiological effects of these compounds. Furthermore, it could be used in the development of new compounds with improved properties, such as increased solubility or increased reactivity. Finally, it could be used in the development of new compounds with improved pharmacological properties, such as increased potency or increased selectivity.