Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(001)−(2×1) surface are studied using density functional theory with various exchange and correlation functionals. The relaxed structures and adsorption energies are obtained and it is found that the dissociated structures are energetically more favorable than the nondissociated structures. However, the ground state energies alone do not determine which structure is obtained experimentally. To elucidate the situation core level shift spectra for Si 2p and C 1s states are simulated and compared with experimentally measured spectra. Several transition barriers were calculated in order to determine, which adsorption structures are kinetically acces...
The adsorption of water on the Si(001) surface is studied by using density-functional total-energy c...
The structures and energetics of organic molecules adsorbed onto clean and H-passivated Si (001) - (...
Phenol adsorption on Si(111)7 x 7 has been studied by synchrotron radiation photoemission and photod...
Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(00...
Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(00...
Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(00...
We investigated the competitive adsorption of a bifunctional molecule, phenol, on Si(100)2x1 by ab i...
We investigated the competitive adsorption of a bifunctional molecule, phenol, on Si10021 by ab init...
We investigated the adsorption of a 6-dimers Si(100)2 x 1 surface as a function of coverage and adso...
The adsorption of a bi-functional organic molecule like phenol on Si(1 0 0)2 × 1 has been investigat...
The adsorption of a bi-functional organic molecule like phenol on Si(100)2 x 1 has been investigated...
In building up molecular circuits and molecule-based devices, it is central to determine how molecul...
The structures and energetics of organic molecules adsorbed onto clean and H-passivated Si (001) - (...
The adsorption of water on the Si(001) surface is studied by using density-functional total-energy c...
The structures and energetics of organic molecules adsorbed onto clean and H-passivated Si (001) - (...
Phenol adsorption on Si(111)7 x 7 has been studied by synchrotron radiation photoemission and photod...
Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(00...
Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(00...
Several dissociated and two nondissociated adsorption structures of the phenol molecule on the Si(00...
We investigated the competitive adsorption of a bifunctional molecule, phenol, on Si(100)2x1 by ab i...
We investigated the competitive adsorption of a bifunctional molecule, phenol, on Si10021 by ab init...
We investigated the adsorption of a 6-dimers Si(100)2 x 1 surface as a function of coverage and adso...
The adsorption of a bi-functional organic molecule like phenol on Si(1 0 0)2 × 1 has been investigat...
The adsorption of a bi-functional organic molecule like phenol on Si(100)2 x 1 has been investigated...
In building up molecular circuits and molecule-based devices, it is central to determine how molecul...
The structures and energetics of organic molecules adsorbed onto clean and H-passivated Si (001) - (...
The adsorption of water on the Si(001) surface is studied by using density-functional total-energy c...
The structures and energetics of organic molecules adsorbed onto clean and H-passivated Si (001) - (...
Phenol adsorption on Si(111)7 x 7 has been studied by synchrotron radiation photoemission and photod...