A method for constructing the potential energy surface for reactions of a molecule with the surface of cleaved non-conducting crystals is reported. The method uses systematic fragmentation to express the total potential in terms of potential energy surfaces which describe reactions of relatively small molecules in the gas phase. The approach is illustrated by an application to the reaction of hydrogen atoms with a hydrogen-terminated silicon(111) surface
The reaction of gas-phase atomic hydrogen with oxygen atoms chemisorbed on a silicon surface is stud...
The collision-induced reaction of gas-phase atomic hydrogen with hydrogen atoms chemisorbed on a sil...
In honoring the seminal contribution of Henry Eyring and Michael Polanyi who first introduced thecon...
Systematic molecular fragmentation of nonconducting crystals has been combined with modified Shepard...
A modified Shepard interpolation method, developed for constructing potential energy surfaces (PESs)...
Wu T, Manthe U. A potential energy surface construction scheme for accurate reaction rate calculatio...
Written chemical formulas, such as C2H6O, can tell us the constituent atoms a molecule contains but ...
The conception of partial potential energy surface (PPES) was presented in this paper. PPES can be e...
The conception of partial potential energy surface (PPES) is presented in this paper. PPES can be ab...
A systematic method for approximating the ab initio electronic energy of molecules from the energies...
Charge-transfer is of key importance in many physical, chemical and biological processes, including ...
Dynamics calculations require the construction of a potential energy surface (PES). This presentatio...
In this paper we address the issue of how to represent the potential energy surfaces that arise in c...
Astrochemical reactions on the surfaces of dust grains, for instance, are thought to be responsible ...
Article on the potential energy surfaces for the reaction of O atoms with CH3I and implications for ...
The reaction of gas-phase atomic hydrogen with oxygen atoms chemisorbed on a silicon surface is stud...
The collision-induced reaction of gas-phase atomic hydrogen with hydrogen atoms chemisorbed on a sil...
In honoring the seminal contribution of Henry Eyring and Michael Polanyi who first introduced thecon...
Systematic molecular fragmentation of nonconducting crystals has been combined with modified Shepard...
A modified Shepard interpolation method, developed for constructing potential energy surfaces (PESs)...
Wu T, Manthe U. A potential energy surface construction scheme for accurate reaction rate calculatio...
Written chemical formulas, such as C2H6O, can tell us the constituent atoms a molecule contains but ...
The conception of partial potential energy surface (PPES) was presented in this paper. PPES can be e...
The conception of partial potential energy surface (PPES) is presented in this paper. PPES can be ab...
A systematic method for approximating the ab initio electronic energy of molecules from the energies...
Charge-transfer is of key importance in many physical, chemical and biological processes, including ...
Dynamics calculations require the construction of a potential energy surface (PES). This presentatio...
In this paper we address the issue of how to represent the potential energy surfaces that arise in c...
Astrochemical reactions on the surfaces of dust grains, for instance, are thought to be responsible ...
Article on the potential energy surfaces for the reaction of O atoms with CH3I and implications for ...
The reaction of gas-phase atomic hydrogen with oxygen atoms chemisorbed on a silicon surface is stud...
The collision-induced reaction of gas-phase atomic hydrogen with hydrogen atoms chemisorbed on a sil...
In honoring the seminal contribution of Henry Eyring and Michael Polanyi who first introduced thecon...