The electronic properties and structural phase transition of bulk rhodium hydride are analyzed using density functional theory calculations with the generalized gradient approximations. The sequent phase transition is observed in bulk rhodium hydride. The predicted new high pressure phase of rhodium hydride is hexagonal NiAs type. The atomic geometry, adsorption energy, and binding energy of the Rh (111) surface are computed. The calculated surface energy for Rh (111) surface is 1.06349 eV and the maximum adsorption energy is obtained in 6×1 phase as 2.8617 eV. The relaxed geometries show that hydrogen has a strong influence on the interlayer distance
The temperature-dependent behavior of the Rh(111)-(2X2)-10 phase was investigated by He-atom scatter...
A systematic density functional theory (DFT) investigation has been performed to understand adsorpti...
The geometric structure of the Rh8+ cation is investigated using a combination of far-infrared multi...
We present extensive density-functional theory (DFT) based calculations of the clean Rh(111) surface...
Density functional theory calculations based on plane-wave expansion and a pseudopotential treatment...
CHx (x=1-3) species, central in many catalytic reactions occurring on transition metal surfaces, hav...
The adsorption and dissociation of NHx fragments on the Rh(111) crystal surface have been studied us...
CHx (x=1-3) adsorptions on clean and CO precovered Rh(111) surfaces were studied by density function...
Surface alloying is an important technique to change chemical properties. In this study, by employin...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
Surface alloying is an important technique to change chemical properties. In this study, by employin...
Includes bibliographical references (p. 62-64).A self-consistent study of Rh(001) has been performed...
We present potential energy surfaces for Rh-CO obtained from d. functional theory for two electronic...
The geometric structure of the Rh(8) (+) cation is investigated using a combination of far-infrared ...
Density functional theory has been used to investigate the structures, bonding and properties of a f...
The temperature-dependent behavior of the Rh(111)-(2X2)-10 phase was investigated by He-atom scatter...
A systematic density functional theory (DFT) investigation has been performed to understand adsorpti...
The geometric structure of the Rh8+ cation is investigated using a combination of far-infrared multi...
We present extensive density-functional theory (DFT) based calculations of the clean Rh(111) surface...
Density functional theory calculations based on plane-wave expansion and a pseudopotential treatment...
CHx (x=1-3) species, central in many catalytic reactions occurring on transition metal surfaces, hav...
The adsorption and dissociation of NHx fragments on the Rh(111) crystal surface have been studied us...
CHx (x=1-3) adsorptions on clean and CO precovered Rh(111) surfaces were studied by density function...
Surface alloying is an important technique to change chemical properties. In this study, by employin...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
Surface alloying is an important technique to change chemical properties. In this study, by employin...
Includes bibliographical references (p. 62-64).A self-consistent study of Rh(001) has been performed...
We present potential energy surfaces for Rh-CO obtained from d. functional theory for two electronic...
The geometric structure of the Rh(8) (+) cation is investigated using a combination of far-infrared ...
Density functional theory has been used to investigate the structures, bonding and properties of a f...
The temperature-dependent behavior of the Rh(111)-(2X2)-10 phase was investigated by He-atom scatter...
A systematic density functional theory (DFT) investigation has been performed to understand adsorpti...
The geometric structure of the Rh8+ cation is investigated using a combination of far-infrared multi...