We present results of ab initio density functional theory (DFT) based calculations of the geometry, electronic structure, and reactivity of subnanometer-sized (29-atom) transition metal nanoparticles (NPs) (Cu29, Ag29, and Au29) supported on single-layer MoS2. As compared to its pristine form, defect-laden MoS2 (with a S vacancy row) has relatively larger effect on the above properties of the NPs. The NPs bind more strongly on defect-laden than on pristine MoS2 (in the order Cu29 \u3e Ag29 \u3e Au29), confirming the important role of vacancies in stabilizing the NPs on the support. The presence of vacancies also leads to an increase in charge transfer from the NPs to MoS2 (with the same elemental trend as for their binding energy) and to a ...
In this study, we employ density functional theory calculations to investigate the very initial form...
Electrochemical devices for efficient production of hydrogen as energy carrier rely still largely on...
In this study, we employ density functional theory calculations to investigate the very initial form...
We present results of <i>ab initio</i> density functional theory (DFT) based calculations of the geo...
Understanding the electronic properties between molybdenum disulfide (MoS2) and metal electrodes is ...
Layered materials, such as MoS2, have a wide range of potential applications due to the properties o...
Employing dispersion-corrected density functional theory, we examine the geometry, electronic struct...
International audienceWe present a theoretical study of molecular adsorption on defects on a MoS$_2$...
Layered materials, such as MoS2, are being intensely studied due to their interesting properties and...
International audienceWe present a theoretical study of molecular adsorption on defects on a MoS$_2$...
International audienceWe present a theoretical study of molecular adsorption on defects on a MoS$_2$...
The critical role of symmetry, in adsorbate-MoS2 interactions, has been demonstrated through a varie...
In this work, surface oxidation of monolayer MoS2 (one of the representative semiconductors in trans...
The critical role of symmetry, in adsorbate-MoS2 interactions, has been demonstrated through a varie...
The critical role of symmetry, in adsorbate-MoS2 interactions, has been demonstrated through a varie...
In this study, we employ density functional theory calculations to investigate the very initial form...
Electrochemical devices for efficient production of hydrogen as energy carrier rely still largely on...
In this study, we employ density functional theory calculations to investigate the very initial form...
We present results of <i>ab initio</i> density functional theory (DFT) based calculations of the geo...
Understanding the electronic properties between molybdenum disulfide (MoS2) and metal electrodes is ...
Layered materials, such as MoS2, have a wide range of potential applications due to the properties o...
Employing dispersion-corrected density functional theory, we examine the geometry, electronic struct...
International audienceWe present a theoretical study of molecular adsorption on defects on a MoS$_2$...
Layered materials, such as MoS2, are being intensely studied due to their interesting properties and...
International audienceWe present a theoretical study of molecular adsorption on defects on a MoS$_2$...
International audienceWe present a theoretical study of molecular adsorption on defects on a MoS$_2$...
The critical role of symmetry, in adsorbate-MoS2 interactions, has been demonstrated through a varie...
In this work, surface oxidation of monolayer MoS2 (one of the representative semiconductors in trans...
The critical role of symmetry, in adsorbate-MoS2 interactions, has been demonstrated through a varie...
The critical role of symmetry, in adsorbate-MoS2 interactions, has been demonstrated through a varie...
In this study, we employ density functional theory calculations to investigate the very initial form...
Electrochemical devices for efficient production of hydrogen as energy carrier rely still largely on...
In this study, we employ density functional theory calculations to investigate the very initial form...