The local adsorption geometries of K, Rb and Cs in the (√3 × √3)R30° and (2 × 2) phases on a Rh(111) surface at coverages of 0.33 and 0.25 ML, respectively, are determined by analyzing LEED intensity data. For all (√3 × √3)R30° phases investigated, the three-fold hcp site is found. For the (2 × 2) overlayer, K remains in the hcp position, while Cs favors the on-top position. For the case of Rb-(2 × 2), LEED analysis suggests occupation of the unusual two-fold bridge site. Since LEED analysis of the Rb-(2 × 2) phase is not completely conclusive, additional experimental evidence is necessary to firmly establish this adsorption geometry
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
High-resolution core-level spectroscopy is used in combination with low-energy electron diffraction ...
The local adsorption geometries of the (2×2)-1O, (2×2)-2O, (2×2)-(O+CO) and (2×2)-(O+2CO) phases on ...
The local adsorption geometries of the (2 × 2)-1O, (2 × 2)-2O, (2 × 2)-(O + CO) and (2 × 2)-(O + 2CO...
The local adsorption geometries of the (2 × 2)-1O, (2 × 2)-2O, (2 × 2)-(O + CO) and (2 × 2)-(O + 2CO...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The adsorption geometries of the p(2×2) and (√3×√3)R30° Rb/Ru(0001) phases at coverages of 0.25 and ...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
Detailed LEED analyses provide structural data of the K and Cs overlayers on Pd(111) with (2×2) and ...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
High-resolution core-level spectroscopy is used in combination with low-energy electron diffraction ...
The local adsorption geometries of the (2×2)-1O, (2×2)-2O, (2×2)-(O+CO) and (2×2)-(O+2CO) phases on ...
The local adsorption geometries of the (2 × 2)-1O, (2 × 2)-2O, (2 × 2)-(O + CO) and (2 × 2)-(O + 2CO...
The local adsorption geometries of the (2 × 2)-1O, (2 × 2)-2O, (2 × 2)-(O + CO) and (2 × 2)-(O + 2CO...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The adsorption geometries of the p(2×2) and (√3×√3)R30° Rb/Ru(0001) phases at coverages of 0.25 and ...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
The ordered overlayer structures formed by Cs adsorbed on a Ru(0001) surface were analyzed by use of...
Detailed LEED analyses provide structural data of the K and Cs overlayers on Pd(111) with (2×2) and ...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
The two ordered phases p(2 × 2) at a coverage θ = 0.25 and (√3 × √3)R30° at θ = 0.33 of potassium ad...
High-resolution core-level spectroscopy is used in combination with low-energy electron diffraction ...