In the present work, we develop a highly accurate, fifteen-dimensional potential energy surface (PES) of CH4 interacting on a rigid flat Ni(111) surface with the methodology of neural network (NN) fit to a database consisted of about 194 208 ab initio density functional theory (DFT) energy points. Some careful tests of the accuracy of the fitting PES are given through the descriptions of the fitting quality, vibrational spectrum of CH4 in vacuum, transition state (TS) geometries as well as the activation barriers. Using a 25-60-60-1 NN structure, we obtain one of the best PESs with the least root mean square errors: 10.11 meV for the entrance region and 17.00 meV for the interaction and product regions. Our PES can reproduce the DFT results...
A global potential energy surface (PES) for the H+CH4 H-2+CH3 reaction has been constructed using t...
The dissociation of CH4 on NiM(111) (M = Co, Rh or Ir) surface has been investigated by using the de...
In this paper we discuss several aspects of methane reactive sticking on Pt(111) in the light of sup...
Methane dissociation on Ni(100) surface is one of the benchmark systems for exploring polyatomic mol...
As one benchmark system of CH4 dissociation on the Ni(111) surface, it is of great significance to e...
The dissociative chemisorption of CH4 on a Ni(111) surface has been studied using different cluster ...
In this thesis we attempt to understand several aspects of the gas-surface physics/chemistry of (a) ...
Lattice thermal motion is of great importance because it has a significant effect on molecule activa...
We constructed a nine-dimensional (9D) potential energy surface (PES) for the dissociative chemisorp...
We have investigated methane (CH4) dissociative chemisorption on the Ni{100} surface by first-princi...
A neural network (NN) approach is proposed for the representation of six-dimensional ab initio poten...
We report here a new global and full dimensional potential energy surface (PES) for the F + CH4 reac...
The dissociative chemisorption of CH4 on an Ni(111) surface has been studied using different cluster...
A new nine-dimensional potential energy surface (PES) for methane has been generated using state-of-...
In this work, we revisit the dissociative sticking of methane on Pt(110)-(2×1) using quasi-classical...
A global potential energy surface (PES) for the H+CH4 H-2+CH3 reaction has been constructed using t...
The dissociation of CH4 on NiM(111) (M = Co, Rh or Ir) surface has been investigated by using the de...
In this paper we discuss several aspects of methane reactive sticking on Pt(111) in the light of sup...
Methane dissociation on Ni(100) surface is one of the benchmark systems for exploring polyatomic mol...
As one benchmark system of CH4 dissociation on the Ni(111) surface, it is of great significance to e...
The dissociative chemisorption of CH4 on a Ni(111) surface has been studied using different cluster ...
In this thesis we attempt to understand several aspects of the gas-surface physics/chemistry of (a) ...
Lattice thermal motion is of great importance because it has a significant effect on molecule activa...
We constructed a nine-dimensional (9D) potential energy surface (PES) for the dissociative chemisorp...
We have investigated methane (CH4) dissociative chemisorption on the Ni{100} surface by first-princi...
A neural network (NN) approach is proposed for the representation of six-dimensional ab initio poten...
We report here a new global and full dimensional potential energy surface (PES) for the F + CH4 reac...
The dissociative chemisorption of CH4 on an Ni(111) surface has been studied using different cluster...
A new nine-dimensional potential energy surface (PES) for methane has been generated using state-of-...
In this work, we revisit the dissociative sticking of methane on Pt(110)-(2×1) using quasi-classical...
A global potential energy surface (PES) for the H+CH4 H-2+CH3 reaction has been constructed using t...
The dissociation of CH4 on NiM(111) (M = Co, Rh or Ir) surface has been investigated by using the de...
In this paper we discuss several aspects of methane reactive sticking on Pt(111) in the light of sup...