The hydroxylation-dependent permeability of bilayer SiO2 supported on Ru(0001) was investigated by XPS and TDS studies in a temperature range of 100K to 600K. For this, the thermal behavior of Pd evaporated at 100K, which results in surface and sub-surface (Ru-supported) binding arrangements, was examined relative to the extent of pre-hydroxylation. Samples containing only defect-mediated hydroxyls showed no effect on Pd diffusion through the film at low temperature. If, instead, the concentration of strongly bound hydroxyl groups and associated weakly bound water molecules was enriched by an electron-assisted hydroxylation procedure, the probability for Pd diffusion through the film is decreased via a pore-blocking mechanism. Above room te...
Heterogeneous chemistry that develops on ultra-thin films such as bilayer SiO2/Ru(0001) is interesti...
In this work, results of surface science studies related to the preparation of supported metal catal...
Heterogeneously catalyzed reactions typically start with adsorption and dissociation of reactant mol...
The hydroxylation-dependent permeability of bilayer SiO<sub>2</sub> supported on Ru(0001) was invest...
Hydroxylation and dissolution of well-structured silica bilayer films grown on a ruthenium single-cr...
Adsorption of Au and Pd over bilayer SiO2/Ru(0001) has been investigated using scanning-probe micros...
Adsorption of Au and Pd over bilayer SiO2/Ru(0001) has been investigated using scanning-probe micros...
Using single-crystalline Fe₃O₄(111) films grown over Pt(111) in UHV as a model-support, we have char...
The fundamental aspects of the chemical reactions at surfaces can be elucidated by using well-define...
Adsorption of Au and Pd over bilayer SiO<sub>2</sub>/Ru has been investigated using scanning-probe m...
Adsorption of Au and Pd over bilayer SiO2/Ru has been investigated using scanning-probe microscopy, ...
The Phillips catalyst (Cr/SiO2) is successfully used in the large-scale production of polyethylene a...
Hydroxylation and dissolution of well-structured silica bilayer films grown on a ruthenium single-cr...
Using low energy electron microscopy and local photoelectron spectroscopy, we investigated the water...
Using single-crystalline Fe₃O₄(111) films grown over Pt(111) in UHV as a model-support, we have char...
Heterogeneous chemistry that develops on ultra-thin films such as bilayer SiO2/Ru(0001) is interesti...
In this work, results of surface science studies related to the preparation of supported metal catal...
Heterogeneously catalyzed reactions typically start with adsorption and dissociation of reactant mol...
The hydroxylation-dependent permeability of bilayer SiO<sub>2</sub> supported on Ru(0001) was invest...
Hydroxylation and dissolution of well-structured silica bilayer films grown on a ruthenium single-cr...
Adsorption of Au and Pd over bilayer SiO2/Ru(0001) has been investigated using scanning-probe micros...
Adsorption of Au and Pd over bilayer SiO2/Ru(0001) has been investigated using scanning-probe micros...
Using single-crystalline Fe₃O₄(111) films grown over Pt(111) in UHV as a model-support, we have char...
The fundamental aspects of the chemical reactions at surfaces can be elucidated by using well-define...
Adsorption of Au and Pd over bilayer SiO<sub>2</sub>/Ru has been investigated using scanning-probe m...
Adsorption of Au and Pd over bilayer SiO2/Ru has been investigated using scanning-probe microscopy, ...
The Phillips catalyst (Cr/SiO2) is successfully used in the large-scale production of polyethylene a...
Hydroxylation and dissolution of well-structured silica bilayer films grown on a ruthenium single-cr...
Using low energy electron microscopy and local photoelectron spectroscopy, we investigated the water...
Using single-crystalline Fe₃O₄(111) films grown over Pt(111) in UHV as a model-support, we have char...
Heterogeneous chemistry that develops on ultra-thin films such as bilayer SiO2/Ru(0001) is interesti...
In this work, results of surface science studies related to the preparation of supported metal catal...
Heterogeneously catalyzed reactions typically start with adsorption and dissociation of reactant mol...