The local chemical properties of specific sites on bimetallic Au-Pd(111) surfaces are investigated in a combined STM, HREELS, and TPD study. Growth and alloying processes are analysed on the atomic scale using STM. From atomically resolved STM images precise information on the structure and composition of bimetallic Au-Pd(111) surfaces is obtained. The adsorption behaviour of carbon monoxide and ethylene on these well-defined bimetallic surfaces is analysed using HREELS and TPD. The combination of STM, HREELS, and TPD in one UHV chamber allows to determine the chemical properties of sites like Au island edge atoms, Pd atoms in a Au matrix (Pd monomers), or Pd dimers in a Au matrix
none4noStructural parameters, binding energies, and bonding mechanism of CO molecules on PdAu(111) a...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
We provide an electrochemical and structural characterization by in situ STM of Au(111)/Os electrode...
This dissertation is focused on understanding heterogeneous bimetallic catalysts using model catalys...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Scanning Tunnelling Microscopy (STM) was utilised together with the high resolution depth-profiling ...
Abstract: Silica supported Pd-Au bimetallic catalysts are highly selective for the acetoxylation of ...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Major industrial processes rely on heterogeneous catalysis to transform and process chemicals. In fa...
Dynamic restructuring of bimetallic catalysts plays a crucial role in their catalytic activity and s...
In the present work, we use in situ Scanning Tunneling Microscopy (STM) to study different electroch...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
In the present work, we use in situ Scanning Tunneling Microscopy (STM) to study different electroch...
Dynamic restructuring of bimetallic catalysts plays a crucial role in their catalytic activity and s...
none4noStructural parameters, binding energies, and bonding mechanism of CO molecules on PdAu(111) a...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
We provide an electrochemical and structural characterization by in situ STM of Au(111)/Os electrode...
This dissertation is focused on understanding heterogeneous bimetallic catalysts using model catalys...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Scanning Tunnelling Microscopy (STM) was utilised together with the high resolution depth-profiling ...
Abstract: Silica supported Pd-Au bimetallic catalysts are highly selective for the acetoxylation of ...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Major industrial processes rely on heterogeneous catalysis to transform and process chemicals. In fa...
Dynamic restructuring of bimetallic catalysts plays a crucial role in their catalytic activity and s...
In the present work, we use in situ Scanning Tunneling Microscopy (STM) to study different electroch...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
In the present work, we use in situ Scanning Tunneling Microscopy (STM) to study different electroch...
Dynamic restructuring of bimetallic catalysts plays a crucial role in their catalytic activity and s...
none4noStructural parameters, binding energies, and bonding mechanism of CO molecules on PdAu(111) a...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
We provide an electrochemical and structural characterization by in situ STM of Au(111)/Os electrode...