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A DFT mechanistic study of two possible hydrolytic evolution pathways of thiamethoxam; implications in food and environmental safety

Peter N. Nelson

2021Computational and Theoretical Chemistry16 citationsDOI

Topics & Concepts

ChemistryHydrolysisExergonic reactionEnthalpyDegradation (telecommunications)Computational chemistryEnvironmental chemistryOrganic chemistryThermodynamicsCatalysisTelecommunicationsComputer sciencePhysicsInsect and Pesticide ResearchPhotochemistry and Electron Transfer StudiesPlant and animal studies
A DFT mechanistic study of two possible hydrolytic evolution pathways of thiamethoxam; implications in food and environmental safety | Litcius