We report here a new global and full dimensional potential energy surface (PES) for the F + CH4 reaction. This PES was constructed by using neural networks (NN) fitting to about 99 000 ab initio energies computed at the UCCSD(T)-F12a/aug-cc-pVTZ level of theory, and the correction terms considering the influence of a larger basis set as well as spin-orbit couplings were further implemented with a hierarchial scheme. This PES, covering both the abstraction and substitution channels, has an overall fitting error of 8.24 meV in total, and 4.87 meV for energies within 2.5 eV using a segmented NN fitting method, and is more accurate than the previous PESs
We report a new full-dimensional potential energy surface (PES) of the H + H2O2 reaction, covering b...
It is shown that neural networks (NNs) are efficient and effective tools for fitting potential energ...
The energy transfer, dissociations, and chemical reactions between O2 and N2 play an important role ...
A global potential energy surface (PES) for the H+CH4 H-2+CH3 reaction has been constructed using t...
A global potential energy surface for the H-2 + OH H2O + H reaction has been constructed using the ...
We report a new global potential energy surface of the HOCO system based on the F12 correction of un...
In the present work, we develop a highly accurate, fifteen-dimensional potential energy surface (PES...
A more flexible neural network (NN) method using the fundamental invariants (FIs) as the input vecto...
Texto completo: acesso restrito. p. 281–288The fitting of ab initio electronic energies of polyatomi...
Eight-dimensional (8D) transition-state wave packet simulations have been performed on two latest po...
A neural network (NN) approach is proposed for the representation of six-dimensional ab initio poten...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...
Welsch R, Manthe U. Full-dimensional and reduced-dimensional calculations of initial state-selected ...
Development and applications of neural network (NN)-based approaches for representing potential ener...
Lenzen T, Manthe U. Neural network based coupled diabatic potential energy surfaces for reactive sca...
We report a new full-dimensional potential energy surface (PES) of the H + H2O2 reaction, covering b...
It is shown that neural networks (NNs) are efficient and effective tools for fitting potential energ...
The energy transfer, dissociations, and chemical reactions between O2 and N2 play an important role ...
A global potential energy surface (PES) for the H+CH4 H-2+CH3 reaction has been constructed using t...
A global potential energy surface for the H-2 + OH H2O + H reaction has been constructed using the ...
We report a new global potential energy surface of the HOCO system based on the F12 correction of un...
In the present work, we develop a highly accurate, fifteen-dimensional potential energy surface (PES...
A more flexible neural network (NN) method using the fundamental invariants (FIs) as the input vecto...
Texto completo: acesso restrito. p. 281–288The fitting of ab initio electronic energies of polyatomi...
Eight-dimensional (8D) transition-state wave packet simulations have been performed on two latest po...
A neural network (NN) approach is proposed for the representation of six-dimensional ab initio poten...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...
Welsch R, Manthe U. Full-dimensional and reduced-dimensional calculations of initial state-selected ...
Development and applications of neural network (NN)-based approaches for representing potential ener...
Lenzen T, Manthe U. Neural network based coupled diabatic potential energy surfaces for reactive sca...
We report a new full-dimensional potential energy surface (PES) of the H + H2O2 reaction, covering b...
It is shown that neural networks (NNs) are efficient and effective tools for fitting potential energ...
The energy transfer, dissociations, and chemical reactions between O2 and N2 play an important role ...