The adsorption of potassium on Fe(100) was studied by time-of-flight forward scattering and recoiling spectroscopy (TOF-SARS), low energy electron diffraction (LEED) and Auger electron spectroscopy (AES). After heating to 650 K of the potassium saturated surface the formation of a p(3 × 3) potassium superstructure was observed by LEED. TOF-SARS experiments ruled out the adsorption of potassium in the on-top, bridge and four-fold hollow site. The only site which is in agreement with all experimental results is the substitutional site where K replaces an Fe atom of the topmost layer of the crystal. This is the first time a substitutional adsorption site has been found on a bcc surface. On an fcc surface such an adsorption site has been found ...
The surface structures formed by annealing of the potassium overlayer on the Fe3O4(111) surface were...
A recent LEED study of the Ni(111)(2 X 2)-K structure indicates that this is one of a small number o...
A recent LEED study of the Ni(111)(2 × 2)-K structure indicates that this is one of a small number o...
The adsorption of potassium on Fe(100) was studied by time-of-flight forward scattering and recoilin...
The adsorption of potassium on Fe(100) was studied by time-of-flight forward scattering and recoilin...
The K covered Fe(100) surface has been studied by X-ray standing waves. The measurements were perfor...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The surface structures formed by annealing of the potassium overlayer on the Fe3O4(111) surface were...
A recent LEED study of the Ni(111)(2 X 2)-K structure indicates that this is one of a small number o...
A recent LEED study of the Ni(111)(2 × 2)-K structure indicates that this is one of a small number o...
The adsorption of potassium on Fe(100) was studied by time-of-flight forward scattering and recoilin...
The adsorption of potassium on Fe(100) was studied by time-of-flight forward scattering and recoilin...
The K covered Fe(100) surface has been studied by X-ray standing waves. The measurements were perfor...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
We have used X-ray standing waves (XSW) in near normal incidence to determine the K–Fe bond length a...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The adsorption of potassium on Al(111) at 90 K and at 300 K has been investigated by low-energy elec...
The surface structures formed by annealing of the potassium overlayer on the Fe3O4(111) surface were...
A recent LEED study of the Ni(111)(2 X 2)-K structure indicates that this is one of a small number o...
A recent LEED study of the Ni(111)(2 × 2)-K structure indicates that this is one of a small number o...