2017
A DFT Study of the Chemical Reactivity of Cimetidine A, C and D in Gas, H2O,> MeOH and EtOH solvents. Luis Humberto Mendoza Huizar, Guillermo Salgado-Morán, Wilson Cardona-Villada, Alison Geraldo Pacheco, Daniel Glossman-Mitnik. 1.A DFT Study of the Chemical Reactivity of Cimetidine A, C and D in Gas, H2O,> MeOH and EtOH solvents. Luis Humberto Mendoza Huizar, Guillermo Salgado-Morán, Wilson Cardona-Villada, Alison Geraldo Pacheco, Daniel Glossman-Mitnik. Journal of Serbian Chemical Society. 82(1), 25-37, 2017. ISSN: 0352-5139 82(1), 25-37, 2017. ISSN: 0352-5139
Abstract
In the present work, the chemical reactivity of cimetidine A, C and D in different solvents was analyzed through the evaluation of global and local DFT reactivity descriptors. In the gas, MeOH and EtOH phases, cimetidine A, C and D exhibit energy differences of 3?11 kcal** mol-1. However, in the aqueous phase, cimetidine A and D are approximately isoenergetic. The values of the hardness indicate that cimetidine A, C and D are more reactive in the presence of a solvent than in the gas phase. In addition, the results suggested that CimC and CimD are better nucleophiles that CimA. The values of the Fukui function suggest that the more reactive sites of CimA are not modified in the different solvents. In the case of CimC, the more reactive sites to electrophilic and free radical attack are located on the thioether sulfur. For CimD, the number and place of the electrophilic and free radical sites are independent of the solvent.
Synthesis, Characterization and Catalytic Activity of Supported NiMo Catalysts
ELECTROCHEMICAL STUDY ABOUT ZINC ELECTRODEPOSITION ONTO GCE AND HOPG SUBSTRATES
Chemical Reactivity of Atrazine Employing the Fukui Function
The role of temperature in copper electrocrystallization in ammoniachloride solutions