Electron transfer into metal nanoparticles on oxide supports is associated with unusual morphological, electronic, and chemical properties of the charged system. Two fundamental charging routes have been identified so far, which are electron tunneling through ultrathin oxide films supported by a bulk metal and charge donation from single-ion impurities embedded in the oxide matrix. In this study, we have investigated whether both routes lead to the formation of metal deposits with identical properties. For this purpose, Au islands have been prepared on 1−2ML thin MgO/Ag(001) layers and on 25-ML-thick CaO films doped with Mo impurities. The morphological and electronic properties of the islands were analyzed with low-temperature scanning tun...
CONSPECTUS: Nonreducible oxides are characterized by large band gaps and are therefore unable to exc...
The functionality of doped oxides sensitively depends on the spatial distribution of the impurity io...
Model systems are very important to identify the working principles of real catalysts, and to develo...
Electron transfer into metal nanoparticles on oxide supports is associated with unusual morphologica...
The growth of Au particles on Mo(001)-supported CaO films has been investigated as a function of fil...
The influence of an oxygen atmosphere on the growth of Au nanoparticles on Mo-doped CaO films has be...
Nonreducible oxides are characterized by large band gaps and are therefore unable to exchange electr...
Low-temperature scanning tunneling microscopy has been employed to analyze the formation of quantum ...
The ability of Mo (Cr) impurities in a CaO (MgO) matrix to act as charge donors to adsorbed gold has...
The charge state of Au nanoparticles deposited on MgO/Fe(001) ultrathin films has been investigated ...
Oxide thin films on metals are now currently used as model systems to study the surface properties o...
Considerable progress has been made recently, using scanning tunnelling microscopy (STM), scanning t...
Using scanning tunneling microscopy and density functional theory (DFT), we have analyzed the local ...
Recent experiments have demonstrated that tiny amounts of Mo impurities give rise to drastic changes...
STM conductance spectroscopy and mapping has been used to analyze the impact of molecular adsorption...
CONSPECTUS: Nonreducible oxides are characterized by large band gaps and are therefore unable to exc...
The functionality of doped oxides sensitively depends on the spatial distribution of the impurity io...
Model systems are very important to identify the working principles of real catalysts, and to develo...
Electron transfer into metal nanoparticles on oxide supports is associated with unusual morphologica...
The growth of Au particles on Mo(001)-supported CaO films has been investigated as a function of fil...
The influence of an oxygen atmosphere on the growth of Au nanoparticles on Mo-doped CaO films has be...
Nonreducible oxides are characterized by large band gaps and are therefore unable to exchange electr...
Low-temperature scanning tunneling microscopy has been employed to analyze the formation of quantum ...
The ability of Mo (Cr) impurities in a CaO (MgO) matrix to act as charge donors to adsorbed gold has...
The charge state of Au nanoparticles deposited on MgO/Fe(001) ultrathin films has been investigated ...
Oxide thin films on metals are now currently used as model systems to study the surface properties o...
Considerable progress has been made recently, using scanning tunnelling microscopy (STM), scanning t...
Using scanning tunneling microscopy and density functional theory (DFT), we have analyzed the local ...
Recent experiments have demonstrated that tiny amounts of Mo impurities give rise to drastic changes...
STM conductance spectroscopy and mapping has been used to analyze the impact of molecular adsorption...
CONSPECTUS: Nonreducible oxides are characterized by large band gaps and are therefore unable to exc...
The functionality of doped oxides sensitively depends on the spatial distribution of the impurity io...
Model systems are very important to identify the working principles of real catalysts, and to develo...