AbstractThe intrinsically small volumes and highly controlled reaction conditions render continuous flow microreactors ideal systems for the synthesis of potentially explosive compounds such as organic azides. In this article, we report the formation of benzyl azide from benzylamine using imidazole-1-sulfonyl azide hydrochloride as diazotransfer reagent. In a small scale (semi-automated) continuous flow setup the diazotransfer reaction was optimized using minimal amounts of reagents; less than 400mg of benzylamine was required to perform 60 optimization reactions. The optimal reaction conditions were indentified to be room temperature, 600s of residence time and an imidazole-1-sulfonyl hydrochloride to benzylamine stoichiometric ratio of 3 ...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
A facile approach to the diazotransfer reagent of imidazole-1-sulfonyl azide was reported. The proce...
A novel method for synthesis of tricyclic benzimidazole derivatives by using continuous flow reactor...
AbstractThe intrinsically small volumes and highly controlled reaction conditions render continuous ...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
In this paper, a micro-fluidic optimized process for the continuous flow synthesis of azo compounds ...
Rapid synthesis and scale-up of active molecules to support the development process of new drug cand...
A copper tube flow reactor is used in the conversion of primary amines into organic azides using imi...
A copper tube flow reactor is used in the conversion of primary amines into organic azides using imi...
AbstractA copper tube flow reactor is used in the conversion of primary amines into organic azides u...
Aromatic aldehydes have been converted into the corresponding carbamoyl azides using iodine azide. T...
Contains fulltext : 91663.pdf (publisher's version ) (Closed access)4 p
Aromatic aldehydes have been converted into the corresponding carbamoyl azides using iodine azide. T...
A simple method for the preparation of a variety of N-sulfonyl aziridines (10 examples) from 1,2-ami...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
A facile approach to the diazotransfer reagent of imidazole-1-sulfonyl azide was reported. The proce...
A novel method for synthesis of tricyclic benzimidazole derivatives by using continuous flow reactor...
AbstractThe intrinsically small volumes and highly controlled reaction conditions render continuous ...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
In this paper, a micro-fluidic optimized process for the continuous flow synthesis of azo compounds ...
Rapid synthesis and scale-up of active molecules to support the development process of new drug cand...
A copper tube flow reactor is used in the conversion of primary amines into organic azides using imi...
A copper tube flow reactor is used in the conversion of primary amines into organic azides using imi...
AbstractA copper tube flow reactor is used in the conversion of primary amines into organic azides u...
Aromatic aldehydes have been converted into the corresponding carbamoyl azides using iodine azide. T...
Contains fulltext : 91663.pdf (publisher's version ) (Closed access)4 p
Aromatic aldehydes have been converted into the corresponding carbamoyl azides using iodine azide. T...
A simple method for the preparation of a variety of N-sulfonyl aziridines (10 examples) from 1,2-ami...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
Organic azides are important in the synthesis of many target molecules of great use in fine chemical...
A facile approach to the diazotransfer reagent of imidazole-1-sulfonyl azide was reported. The proce...
A novel method for synthesis of tricyclic benzimidazole derivatives by using continuous flow reactor...