As one benchmark system of CH4 dissociation on the Ni(111) surface, it is of great significance to explore the role of each degree of freedom (DOF) of reactant CH4 in its first C-H bond dissociation from quantum dynamics simulations. Here, the influence of the CH stretching DOF of methyl limited in C-3v symmetry is quantitatively investigated as well as the important role of azimuth. We calculated the sticking probabilities, S-0, of ground state (GS) CH4 dissociation on a rigid Ni(111) surface by performing some seven-dimensional to nine-dimensional (9D) quantum dynamics simulations based on one highly accurate and fifteen-dimensional (15D) ab initio potential energy surface which we recently developed. Our direct quantum dynamics results s...
We carried out six-dimensional quantum dynamics calculations for the dissociative chemisorption of H...
In this paper we discuss several aspects of methane reactive sticking on Pt(111) in the light of sup...
The dissociative chemisorption of CH4 on an Ni(111) surface has been studied using different cluster...
Methane dissociation on Ni(100) surface is one of the benchmark systems for exploring polyatomic mol...
Lattice thermal motion is of great importance because it has a significant effect on molecule activa...
In this thesis we attempt to understand several aspects of the gas-surface physics/chemistry of (a) ...
We have investigated methane (CH4) dissociative chemisorption on the Ni{100} surface by first-princi...
The dissociative chemisorption of small molecules on metal surfaces is an important step in many het...
ABSTRACT: The dissociative chemisorption of methane on metal surfaces is of fundamental and practica...
In the present work, we develop a highly accurate, fifteen-dimensional potential energy surface (PES...
The dissociative chemisorption of CH4 on a Ni(111) surface has been studied using different cluster ...
Author Institution: Department of Chemistry, Tufts University, Medford, MA, 02155; Department of Che...
We present results of wavepacket simulations of scattering of an oriented methane molecule from a fl...
The dissociative chemisorption of methane on metal surfaces has attracted much attention in recent y...
In this work, we revisit the dissociative sticking of methane on Pt(110)-(2×1) using quasi-classical...
We carried out six-dimensional quantum dynamics calculations for the dissociative chemisorption of H...
In this paper we discuss several aspects of methane reactive sticking on Pt(111) in the light of sup...
The dissociative chemisorption of CH4 on an Ni(111) surface has been studied using different cluster...
Methane dissociation on Ni(100) surface is one of the benchmark systems for exploring polyatomic mol...
Lattice thermal motion is of great importance because it has a significant effect on molecule activa...
In this thesis we attempt to understand several aspects of the gas-surface physics/chemistry of (a) ...
We have investigated methane (CH4) dissociative chemisorption on the Ni{100} surface by first-princi...
The dissociative chemisorption of small molecules on metal surfaces is an important step in many het...
ABSTRACT: The dissociative chemisorption of methane on metal surfaces is of fundamental and practica...
In the present work, we develop a highly accurate, fifteen-dimensional potential energy surface (PES...
The dissociative chemisorption of CH4 on a Ni(111) surface has been studied using different cluster ...
Author Institution: Department of Chemistry, Tufts University, Medford, MA, 02155; Department of Che...
We present results of wavepacket simulations of scattering of an oriented methane molecule from a fl...
The dissociative chemisorption of methane on metal surfaces has attracted much attention in recent y...
In this work, we revisit the dissociative sticking of methane on Pt(110)-(2×1) using quasi-classical...
We carried out six-dimensional quantum dynamics calculations for the dissociative chemisorption of H...
In this paper we discuss several aspects of methane reactive sticking on Pt(111) in the light of sup...
The dissociative chemisorption of CH4 on an Ni(111) surface has been studied using different cluster...