-
Categories
-
Pharmaceutical Intermediates
-
Active Pharmaceutical Ingredients
-
Food Additives
- Industrial Coatings
- Agrochemicals
- Dyes and Pigments
- Surfactant
- Flavors and Fragrances
- Chemical Reagents
- Catalyst and Auxiliary
- Natural Products
- Inorganic Chemistry
-
Organic Chemistry
-
Biochemical Engineering
- Analytical Chemistry
-
Cosmetic Ingredient
- Water Treatment Chemical
-
Pharmaceutical Intermediates
Promotion
ECHEMI Mall
Wholesale
Weekly Price
Exhibition
News
-
Trade Service
Title: The Synthesis and Characterization of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine: A Promising Compound for Pharmaceutical and Chemical Industries
Introduction
In the field of chemistry, the synthesis of novel compounds is a continuous process that has led to the discovery of many new substances with potential applications in various industries, including pharmaceuticals, agrochemicals, and chemicals.
In this article, we will discuss the synthesis and characterization of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine, a compound that has shown promising results in preliminary studies and has potential applications in both pharmaceutical and chemical industries.
Synthesis of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine
The synthesis of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine involved a multistep process that involved the synthesis of the intermediate compounds before the final product was obtained.
The synthesis process involved the following steps:
Step 1: Preparation of 3,5-Bis(trifluoromethyl)phenyl amine
The synthesis of 3,5-Bis(trifluoromethyl)phenyl amine began by reacting 3,5-dibromothiophene with ammonia in the presence of a suitable catalyst, such as aqueous sodium hydroxide, to form 3,5-Bis(trifluoromethyl)phenylamine.
Step 2: Preparation of 1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethanone
To prepare 1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethanone, 3,5-Bis(trifluoromethyl)phenylamine was reacted with acetone in the presence of an acid catalyst, such as sulfuric acid, to form the corresponding acid, which was then treated with a base, such as sodium ethoxide, to obtain the target compound.
Step 3: Preparation of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine
The final compound, 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine, was synthesized by treating 1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethanone with di-tert-butyl dicarbonate in the presence of a crown ether catalyst, such as 18-crown-6, and then treating the resulting product with sodium hydroxide.
The product was then extracted with an organic solvent, such as ethyl acetate, and purified by flash chromatography using a mixture of ethyl acetate and methanol as the eluent.
Characterization of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine
The characterization of 2-(R)-[1-(S)-(3,5-Bis(trifluoromethyl)phenyl)ethoxy]-3-(S)-fluorophenylmorpholine was carried out using various analytical techniques, including spectroscopy and chromatography.
Infrared Spectroscopy:
Infrared spectroscopy was used to determine the functional groups present in the