Literature DB >> 29260152

Unravelling the nature of glyphosate binding to goethite surfaces by ab initio molecular dynamics simulations.

Ashour A Ahmed1, Peter Leinweber, Oliver Kühn.   

Abstract

Investigation of the interaction between glyphosate (GLP) and soil minerals is essential for understanding GLP's fate in the environment. Whereas GLP-goethite binding has been discussed extensively, the impact of water as well as of different goethite surface planes has not been studied yet. In this contribution, periodic density functional theory-based molecular dynamics simulations are applied to explore possible binding mechanisms for GLP with three goethite surface planes (010, 001, and 100) in the presence of water. The investigation included several binding motifs of monodentate (M) and bidentate (B) type. It was found that the binding stability increases in the order M@001 < M@010 < (2O + 2Fe) B@100 < M@100 < (1O + 2Fe) B@001 < (2O + 1Fe) B@010. This behavior has been traced to the presence of intramolecular H-bonds (HBs) in GLP as well as intermolecular HBs between GLP and water, GLP and goethite, and water and goethite. These interactions are accompanied by proton transfer from GLP to water and to goethite, and from water to goethite as well as water dissociation at the goethite surface. Further, it was observed that the OH- species can replace the adsorbed GLP at the goethite surface, which could explain the well-known drastic drop in GLP adsorption at high pH. The present results highlight the role of water in the GLP-goethite interaction and provide a molecular level perspective on available experimental data.

Entities:  

Year:  2018        PMID: 29260152     DOI: 10.1039/c7cp06245a

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  3 in total

1.  Ab Initio Molecular Dynamics Simulations of the Interaction between Organic Phosphates and Goethite.

Authors:  Prasanth B Ganta; Oliver Kühn; Ashour A Ahmed
Journal:  Molecules       Date:  2020-12-31       Impact factor: 4.411

2.  On glyphosate-kaolinite surface interactions. A molecular dynamic study.

Authors:  Edgar Galicia-Andrés; Daniel Tunega; Martin H Gerzabek; Chris Oostenbrink
Journal:  Eur J Soil Sci       Date:  2020-05-06       Impact factor: 4.949

3.  Leaching and degradation of 13C2-15N-glyphosate in field lysimeters.

Authors:  Peter Gros; Ralph Meissner; Marisa A Wirth; Marion Kanwischer; Holger Rupp; Detlef E Schulz-Bull; Peter Leinweber
Journal:  Environ Monit Assess       Date:  2020-01-21       Impact factor: 2.513

  3 in total

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