Sulfonamide and urea-based anions chemosensors
-
Add time:07/22/2019 Source:sciencedirect.com
The detection of anions has attracted considerable interest because of their importance in various physiological processes. In this study, two sulfonamide and urea-based compounds (1a and 1b) were successfully developed and their spectroscopic and anion recognition properties were fully investigated. These results showed that: (1) compounds showed high selectivity towards cyanide and fluoride ions in CH3CN; (2) compounds only exhibited a large change in fluorescence in the presence of cyanide ions in CH3CN–H2O (95:5, v/v); and (3) compound 1b could act as a gel in dimethyl sulfoxide that transforms into a homogeneous solution upon exposure to cyanide ions. This research suggests that sulfonamide and urea can act as hydrogen-bond donors and provides an alternative approach to the design of novel anion chemosensors.
We also recommend Trading Suppliers and Manufacturers of 2-amino-5-naphthalene-(N,N-dimethyl)sulfonamide (cas 1214-03-5). Pls Click Website Link as below: cas 1214-03-5 suppliers
Prev:Synthesis of novel 5-amino-1,3,4-thiadiazole-2-sulfonamide containing acridine sulfonamide/carboxamide compounds and investigation of their inhibition effects on human carbonic anhydrase I, II, IV and VII
Next:KMnO4-mediated oxidative CN bond cleavage of tertiary amines: Synthesis of amides and sulfonamides) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Synthesis and description of intermolecular interactions in new sulfonamide derivatives of tranexamic acid07/25/2019
- Facile dimethyl amino group triggered cyclic sulfonamides synthesis and evaluation as alkaline phosphatase inhibitors07/24/2019
- KMnO4-mediated oxidative CN bond cleavage of tertiary amines: Synthesis of amides and sulfonamides07/23/2019
- Synthesis of novel 5-amino-1,3,4-thiadiazole-2-sulfonamide containing acridine sulfonamide/carboxamide compounds and investigation of their inhibition effects on human carbonic anhydrase I, II, IV and VII07/20/2019
- Synthesis and urease inhibitory potential of benzophenone sulfonamide hybrid in vitro and in silico07/21/2019


