The nature of the interaction of low molecular weight natural organic matter (NOM) with the Ag (1 1 1) surface is of crucial importance in the environment. The low molecular weight organics used in this study are formic acid (FA), acetic acid (AA1) and ascorbic acid (AA2). In this study, we think of a realistic environment where single, multiple or even a mixture of NOM’s can attach on one Ag (1 1 1) surface. Such critical information is relevant in order to understand the behaviour of engineered nanoparticles (ENPs) when they get into the environment. To bridge this gap, we investigate the adsorption and co-adsorption properties of NOM’s on Ag (1 1 1) surface using dispersion-corrected density functional theory (DFT-D) in the gas phase and...
International audienceDescribing and understanding surface chemistry on the atomic scale is of prima...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
Organic carbon (OC) is an essential component of soil; its presence in soil is important for growing...
The nature of the interaction of low molecular weight natural organic matter (NOM) with the Ag (1 1 ...
Understanding the nature of the interactions between natural organic matter (NOM) and engineered nan...
The adsorption of a molecule at a surface is a fundamental step in a wide variety of industrially re...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
We present density functional theory calculations with a correction for the long-range interactions ...
The presence of water in biofuels poses the question of how it affects the frictional performance of...
The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural org...
13 pags, 6 figs., 6 tabs.Density functional theory (DFT) is applied to theoretically study the capt...
We present density functional theory calculations with a correction for the long-range interactions ...
Under natural conditions, the adsorption of ions at the solid-water interface may be strongly influe...
Describing and understanding surface chemistry on the atomic scale is of primary importance in predi...
9 pags. 8 figs.The adsorption of humic substances on Ag nanoparticles (AgNPs) is of crucial environm...
International audienceDescribing and understanding surface chemistry on the atomic scale is of prima...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
Organic carbon (OC) is an essential component of soil; its presence in soil is important for growing...
The nature of the interaction of low molecular weight natural organic matter (NOM) with the Ag (1 1 ...
Understanding the nature of the interactions between natural organic matter (NOM) and engineered nan...
The adsorption of a molecule at a surface is a fundamental step in a wide variety of industrially re...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
We present density functional theory calculations with a correction for the long-range interactions ...
The presence of water in biofuels poses the question of how it affects the frictional performance of...
The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural org...
13 pags, 6 figs., 6 tabs.Density functional theory (DFT) is applied to theoretically study the capt...
We present density functional theory calculations with a correction for the long-range interactions ...
Under natural conditions, the adsorption of ions at the solid-water interface may be strongly influe...
Describing and understanding surface chemistry on the atomic scale is of primary importance in predi...
9 pags. 8 figs.The adsorption of humic substances on Ag nanoparticles (AgNPs) is of crucial environm...
International audienceDescribing and understanding surface chemistry on the atomic scale is of prima...
none3noThe fundamental knowledge of the interaction between biomolecules and mineral surfaces is of ...
Organic carbon (OC) is an essential component of soil; its presence in soil is important for growing...