The properties of a halogen-covered platinum(111) surface have been studied by using density functional theory (DFT), because halides are often present at electrochemical electrode/electrolyte interfaces. We focused in particular on the halogen-induced work function change as a function of the coverage of fluorine, chlorine, bromine and iodine. For electronegative adsorbates, an adsorption-induced increase of the work function is usually expected, yet we find a decrease of the work function for Cl, Br and I, which is most prominent at a coverage of approximately 0.25 ML. This coverage-dependent behavior can be explained by assuming a combination of charge transfer and polarization effects on the adsorbate layer. The results are contrasted t...
Halogens, including iodine, are commonly used as additives to enhance the selectivity of catalytic p...
The adsorbate structures on electrode surfaces in an electrochemical environment are controlled by t...
Illustrative quantum-chemical calculations for selected atomic and molecular chemisorbates on Pt(111...
The properties of a halogen-covered platinum(111) surface have been studied by using density functio...
Two mechanisms have been cited as the reason for unexpected work function decrease upon adsorption o...
Using periodic density-functional theory calculations, we address the work-function change induced b...
The adsorption of halides on Cu(111) and Pt(111) has been studied using periodic density functional ...
The interaction of F, Cl, Br and I with three common electrode surfaces (mercury, silver, and platin...
First-principles calculations of work function tuning induced by different chemical terminations on...
The interaction of Cl with Pt(110) was studied in UHV by scanning tunneling microscopy, low-energy e...
Comparative theoretical study of halogens (F, Cl, I) adsorption on cation-rich ζ-InAs(001)-(4 × 2) s...
Halogens are used as modifiers in catalytic processes, notably including photocatalytic watersplitti...
Density-functional theory (DFT) and second order Møller-Plesset perturbation theory calculations ind...
We used density functional theory to study the adsorption of hydrogen, lithium, sodium, and potassiu...
The interaction of aromatic molecules with metal surfaces is of key relevance for the functionality ...
Halogens, including iodine, are commonly used as additives to enhance the selectivity of catalytic p...
The adsorbate structures on electrode surfaces in an electrochemical environment are controlled by t...
Illustrative quantum-chemical calculations for selected atomic and molecular chemisorbates on Pt(111...
The properties of a halogen-covered platinum(111) surface have been studied by using density functio...
Two mechanisms have been cited as the reason for unexpected work function decrease upon adsorption o...
Using periodic density-functional theory calculations, we address the work-function change induced b...
The adsorption of halides on Cu(111) and Pt(111) has been studied using periodic density functional ...
The interaction of F, Cl, Br and I with three common electrode surfaces (mercury, silver, and platin...
First-principles calculations of work function tuning induced by different chemical terminations on...
The interaction of Cl with Pt(110) was studied in UHV by scanning tunneling microscopy, low-energy e...
Comparative theoretical study of halogens (F, Cl, I) adsorption on cation-rich ζ-InAs(001)-(4 × 2) s...
Halogens are used as modifiers in catalytic processes, notably including photocatalytic watersplitti...
Density-functional theory (DFT) and second order Møller-Plesset perturbation theory calculations ind...
We used density functional theory to study the adsorption of hydrogen, lithium, sodium, and potassiu...
The interaction of aromatic molecules with metal surfaces is of key relevance for the functionality ...
Halogens, including iodine, are commonly used as additives to enhance the selectivity of catalytic p...
The adsorbate structures on electrode surfaces in an electrochemical environment are controlled by t...
Illustrative quantum-chemical calculations for selected atomic and molecular chemisorbates on Pt(111...