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N-Fluorformyl-N-trifluormethyl-4-nitro-anilin, also known as 4-nitro-N-(trifluoromethyl)aniline-N'-fluoroformamide, is a complex organic compound with the chemical formula C8H5F4N2O2. It is a derivative of aniline, featuring a nitro group at the para position, a trifluoromethyl group at the ortho position, and a fluoroformyl group attached to the nitrogen atom. N-Fluorformyl-N-trifluormethyl-4-nitro-anilin is characterized by its yellow crystalline appearance and is sensitive to light and moisture. It is primarily used as a reagent in the synthesis of various pharmaceuticals, agrochemicals, and other specialty chemicals. Due to its reactivity and potential hazards, it is essential to handle N-Fluorformyl-N-trifluormethyl-4-nitro-anilin with care, following proper safety protocols.

3700-15-0

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3700-15-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 3700-15-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 3,7,0 and 0 respectively; the second part has 2 digits, 1 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 3700-15:
(6*3)+(5*7)+(4*0)+(3*0)+(2*1)+(1*5)=60
60 % 10 = 0
So 3700-15-0 is a valid CAS Registry Number.

3700-15-0Downstream Products

3700-15-0Relevant academic research and scientific papers

Straightforward access to N-trifluoromethyl amides, carbamates, thiocarbamates and ureas

Scattolin, Thomas,Bouayad-Gervais, Samir,Schoenebeck, Franziska

, p. 102 - 107 (2019)

Amides and related carbonyl derivatives are of central importance across the physical and life sciences1,2. As a key biological building block, the stability and conformation of amides affect the structures of peptides and proteins as well as their biological function. In addition, amide-bond formation is one of the most frequently used chemical transformations3,4. Given their ubiquity, a technology that is capable of modifying the fundamental properties of amides without compromising on stability may have considerable potential in pharmaceutical, agrochemical and materials science. In order to influence the physical properties of organic molecules—such as solubility, lipophilicity, conformation, pKa and (metabolic) stability—fluorination approaches have been widely adopted5–7. Similarly, site-specific modification with isosteres and peptidomimetics8, or in particular by N-methylation9, has been used to improve the stability, physical properties, bioactivities and cellular permeabilities of compounds. However, the N-trifluoromethyl carbonyl motif—which combines both N-methylation and fluorination approaches—has not yet been explored, owing to a lack of efficient methodology to synthesize it. Here we report a straightforward method to access N-trifluoromethyl analogues of amides and related carbonyl compounds. The strategy relies on the operationally simple preparation of bench-stable carbamoyl fluoride building blocks, which can be readily diversified to the corresponding N–CF3 amides, carbamates, thiocarbamates and ureas. This method tolerates rich functionality and stereochemistry, and we present numerous examples of highly functionalized compounds—including analogues of widely used drugs, antibiotics, hormones and polymer units.

N-TRIFLUORMETHYLCARBONYL COMPOUNDS AND METHODS FOR THEIR SYNTHESIS

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Page/Page column 10-12, (2020/06/10)

The present invention relates to the synthesis of N-trifluoromethylcarbonyl compounds starting from isothiocyanates, which can be converted into N-trifluoromethylcarbamoyl fluorides or similar compounds, which later on can be derivatized further to amides

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