Photoelectron diffraction in the scanned-energy mode is now an accepted method in surface structural analysis. Here we demonstrate its use in the determination of the local adsorption geometry of the methoxy species CH3O- on a Ni(111) surface. The bonding site of the O atom at an ''fcc'' hollow site directly above a Ni atom in the third layer is obtained from the experimental data using direct methods, and the exact Ni-O spacing and degree of local substrate distortion, together with the molecular orientation, are found by the use of multiple scattering simulations. A re-analysis of earlier data obtained for the same species on Cu(111) confirms the results of this earlier study and has allowed an evaluation of possible subtle differences in...
The structural determination of small molecules adsorbed on single crystal surfaces has been investi...
Using N 1s scanned-energy mode photoelectron diffraction (PhD) combined with full multiple scatterin...
Backscattering photoelectron diffraction, particularly in the energy-scan mode, is now an establishe...
Using photoelectron diffraction in the scanned energy mode the structure of the surface methoxy spec...
Two recently proposed methods for approximate but direct adsorbate site determination using scanned-...
Two recently proposed methods for approximate but direct adsorbate site determination using scanned‐...
The adsorption geometry of the surface methoxy species (-OCH3) on Cu(111) has been determined quanti...
Quantitative structure determinations using scanned- energy mode photoelectron diffraction are prese...
The adsorption geometry of the surface methoxy species (-OCH3) on Cu(111) has been determined quanti...
THE determination of the adsorption geometry of molecules and molecular fragments on single-crystal ...
THE determination of the adsorption geometry of molecules and molecular fragments on single-crystal ...
Using scanned-energy mode photoelectron diffraction (PhD) we have developed a two-stage methodology ...
Using scanned-energy mode photoelectron diffraction (PhD) we have developed a two-stage methodology ...
The synchrotron radiation based technique of Photoelectron Diffraction (PhD) has been applied to thr...
We describe the application of two direct methods for the transformation of scanned-energy mode phot...
The structural determination of small molecules adsorbed on single crystal surfaces has been investi...
Using N 1s scanned-energy mode photoelectron diffraction (PhD) combined with full multiple scatterin...
Backscattering photoelectron diffraction, particularly in the energy-scan mode, is now an establishe...
Using photoelectron diffraction in the scanned energy mode the structure of the surface methoxy spec...
Two recently proposed methods for approximate but direct adsorbate site determination using scanned-...
Two recently proposed methods for approximate but direct adsorbate site determination using scanned‐...
The adsorption geometry of the surface methoxy species (-OCH3) on Cu(111) has been determined quanti...
Quantitative structure determinations using scanned- energy mode photoelectron diffraction are prese...
The adsorption geometry of the surface methoxy species (-OCH3) on Cu(111) has been determined quanti...
THE determination of the adsorption geometry of molecules and molecular fragments on single-crystal ...
THE determination of the adsorption geometry of molecules and molecular fragments on single-crystal ...
Using scanned-energy mode photoelectron diffraction (PhD) we have developed a two-stage methodology ...
Using scanned-energy mode photoelectron diffraction (PhD) we have developed a two-stage methodology ...
The synchrotron radiation based technique of Photoelectron Diffraction (PhD) has been applied to thr...
We describe the application of two direct methods for the transformation of scanned-energy mode phot...
The structural determination of small molecules adsorbed on single crystal surfaces has been investi...
Using N 1s scanned-energy mode photoelectron diffraction (PhD) combined with full multiple scatterin...
Backscattering photoelectron diffraction, particularly in the energy-scan mode, is now an establishe...