The coadsorption of N and O on Ru(0001) has been studied by scanning tunneling microscopy; by this technique we can distinquish between the two atomic adsorbates. N and O form a dense intermixed 2×2 phase in equilibrium with a dilute lattice gas. The two-dimensional “vapor pressure” of N, i.e., its concentration in the lattice gas, has been determined for various ratios of N and O in the dense phase by adjusting the total coverage of N and O. The resulting vapor pressure curve indicates a positive enthalpy of mixing, due to relatively weak N-O interactions in the dense phase
We present experimental and DFT-simulated STM images of ultrathin RuO2(110) films on Ru(0001), inclu...
We use a multilayer lattice gas model for adsorption and desorption to analyze and simulate desorpti...
The effect of preadsorbed oxygen on the subsequent adsorption and reactions of water on Ru(0001) has...
Atomic nitrogen on Ru(0001) was prepared by dissociative chemisorption of N2 and studied by scanning...
The chemisorption of oxygen on the Ru(001) surface shows ordered p(2×2) and p(1×2) phases at coverag...
The dynamic behavior of N atoms adsorbed on a Ru(0001) surface was studied by scanning tunneling mic...
Equilibrium fluctuations of islands of adsorbed O atoms on Ru(0001) were investigated by scanning tu...
The lattice gas model with hcp and fcc sites is used to study the O/Ru(0 0 0 1) adsorbate system. Wi...
Low-energy electron diffraction and density-functional theory calculations are used to examine the a...
The temperature-dependent probability of occupation of the two threefold-coordinated adsorption site...
The diffusive motion of O atoms adsorbed on Ru(0001) was observed on the atomic scale by scanning tu...
The dissociative chemisorption of N2 on Ru(0001), Ru(101̄0), and Ru(112̄1) surfaces at 300 K was stu...
An intermediate state in atomic diffusion processes in the O(2×2) layer on Ru(0001) is resolved with...
The local adsoprtion geometries of the (2 × 2)-N and (✓3 × ✓3)R30°-N phases on the Ru(0001) surface ...
Electron energy loss vibrational spectroscopy (EELS) and thermal desorption mass spectrometry (TDMS)...
We present experimental and DFT-simulated STM images of ultrathin RuO2(110) films on Ru(0001), inclu...
We use a multilayer lattice gas model for adsorption and desorption to analyze and simulate desorpti...
The effect of preadsorbed oxygen on the subsequent adsorption and reactions of water on Ru(0001) has...
Atomic nitrogen on Ru(0001) was prepared by dissociative chemisorption of N2 and studied by scanning...
The chemisorption of oxygen on the Ru(001) surface shows ordered p(2×2) and p(1×2) phases at coverag...
The dynamic behavior of N atoms adsorbed on a Ru(0001) surface was studied by scanning tunneling mic...
Equilibrium fluctuations of islands of adsorbed O atoms on Ru(0001) were investigated by scanning tu...
The lattice gas model with hcp and fcc sites is used to study the O/Ru(0 0 0 1) adsorbate system. Wi...
Low-energy electron diffraction and density-functional theory calculations are used to examine the a...
The temperature-dependent probability of occupation of the two threefold-coordinated adsorption site...
The diffusive motion of O atoms adsorbed on Ru(0001) was observed on the atomic scale by scanning tu...
The dissociative chemisorption of N2 on Ru(0001), Ru(101̄0), and Ru(112̄1) surfaces at 300 K was stu...
An intermediate state in atomic diffusion processes in the O(2×2) layer on Ru(0001) is resolved with...
The local adsoprtion geometries of the (2 × 2)-N and (✓3 × ✓3)R30°-N phases on the Ru(0001) surface ...
Electron energy loss vibrational spectroscopy (EELS) and thermal desorption mass spectrometry (TDMS)...
We present experimental and DFT-simulated STM images of ultrathin RuO2(110) films on Ru(0001), inclu...
We use a multilayer lattice gas model for adsorption and desorption to analyze and simulate desorpti...
The effect of preadsorbed oxygen on the subsequent adsorption and reactions of water on Ru(0001) has...