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Effect of the nucleophile’s nature on chloroacetanilide herbicides cleavage reaction mechanism. A dft study
ArticleAbstract: In this study, the degradation mechanism of chloroacetanilide herbicides in the presence of four difPalabras claves:Chloroacetanilide herbicides, DFT calculations, Electronic flux, Nucleophilic substitution, Reaction forceAutores:Fernando Javier Torres, José Luis Paz, Jose R. Mora, Luis Rincon, Marquez E.A., Sebastian CuestaFuentes:googlescopusTheoretical study on the flash vacuum gas-phase pyrolysis reaction mechanism of 2-(2-benzylidenehydrazinyl)pyridine and analogous
ArticleAbstract: In the present study, the most favourable reaction mechanism in the flash vacuum pyrolysis of 2-[(2EPalabras claves:B3LYP-D3, Hammet σ p, Hydrazines, IBSI, pyrolysis, reaction mechanismAutores:José Luis Paz, Jose R. Mora, Loroño M.A., Marquez E.A., Sebastian CuestaFuentes:scopusUnveiling the structure-reactivity relationship involved in the reaction mechanism of the HCl-catalyzed alkyl t-butyl ethers thermal decomposition. A computational study
ArticleAbstract: The gas-phase thermal decomposition of a series of alkyl t-butyl ethers catalyzed by hydrogen chloriPalabras claves:ethers decomposition, hydrogen chloride, reaction mechanism, structure-reactivity relationshipAutores:César H. Zambrano, Fernando Javier Torres, Flores-Morales V., Jose R. Mora, Lorena Maribel Meneses-Olmedo, Luis Rincon, Marquez E.A., Sebastian CuestaFuentes:scopusOn the reaction mechanism of the 3,4-dimethoxybenzaldehyde formation from 1-(3',4'-Dimethoxyphenyl)Propene
ArticleAbstract: Lignin peroxidase (LiP) is an important enzyme for degrading aromatic hydrocarbons not only in naturPalabras claves:1-(3'4'-dimethoxyphenyl) propene, 3,4-dimethoxybenzaldehyde, DFT, Force constant, Lignin peroxidase, Reaction force, reaction mechanismAutores:Alzate-Morales J., Felipe E. Gallegos, Josefa Arias, Lorena Maribel Meneses-Olmedo, Sebastian CuestaFuentes:scopus