The functionality of doped oxides sensitively depends on the spatial distribution of the impurity ions and their interplay with compensating defects in the lattice. In our combined scanning tunneling microscopy (STM) and density functional theory (DFT) study, we analyze defects occurring in Mo-doped CaO(001) films at the atomic scale. By means of topographic imaging, we identify common point and line defect in the doped oxide, in particular Mo donors and compensating Ca vacancies. The influence of charged defects on the oxide electronic structure is analyzed by STM conductance spectroscopy. The experimentally observed defect features are connected to typical point defects in the CaO lattice by means of DFT calculations. Apart from the ident...
The physics and chemistry of oxide surfaces cannot be recognized without taking into account the var...
Defects and interfaces are ubiquitous in polycrystalline metal oxide materials, and their presence g...
Realistic oxide materials are often semiconductors, in particular at elevated temperatures, and thei...
The functionality of doped oxides sensitively depends on the spatial distribution of the impurity io...
Recent experiments have demonstrated that tiny amounts of Mo impurities give rise to drastic changes...
Nonreducible oxides are characterized by large band gaps and are therefore unable to exchange electr...
The electronic structure of CaO films of 10–60 monolayer thickness grown on Mo(001) has been investi...
CONSPECTUS: Nonreducible oxides are characterized by large band gaps and are therefore unable to exc...
Oxides and oxide-derived materials find ubiquitous applications in many industrial applications. The...
The ability of Mo (Cr) impurities in a CaO (MgO) matrix to act as charge donors to adsorbed gold has...
Scanning tunneling microscopy has developed into a powerful tool for the characterization of conduct...
Electron transfer into metal nanoparticles on oxide supports is associated with unusual morphologica...
The influence of an oxygen atmosphere on the growth of Au nanoparticles on Mo-doped CaO films has be...
We investigate effects of doping on formation energy and concentration of oxygen vacancies at a meta...
The growth of computational resources has enabled investigations of large-scale and highly correlate...
The physics and chemistry of oxide surfaces cannot be recognized without taking into account the var...
Defects and interfaces are ubiquitous in polycrystalline metal oxide materials, and their presence g...
Realistic oxide materials are often semiconductors, in particular at elevated temperatures, and thei...
The functionality of doped oxides sensitively depends on the spatial distribution of the impurity io...
Recent experiments have demonstrated that tiny amounts of Mo impurities give rise to drastic changes...
Nonreducible oxides are characterized by large band gaps and are therefore unable to exchange electr...
The electronic structure of CaO films of 10–60 monolayer thickness grown on Mo(001) has been investi...
CONSPECTUS: Nonreducible oxides are characterized by large band gaps and are therefore unable to exc...
Oxides and oxide-derived materials find ubiquitous applications in many industrial applications. The...
The ability of Mo (Cr) impurities in a CaO (MgO) matrix to act as charge donors to adsorbed gold has...
Scanning tunneling microscopy has developed into a powerful tool for the characterization of conduct...
Electron transfer into metal nanoparticles on oxide supports is associated with unusual morphologica...
The influence of an oxygen atmosphere on the growth of Au nanoparticles on Mo-doped CaO films has be...
We investigate effects of doping on formation energy and concentration of oxygen vacancies at a meta...
The growth of computational resources has enabled investigations of large-scale and highly correlate...
The physics and chemistry of oxide surfaces cannot be recognized without taking into account the var...
Defects and interfaces are ubiquitous in polycrystalline metal oxide materials, and their presence g...
Realistic oxide materials are often semiconductors, in particular at elevated temperatures, and thei...