» Articles » PMID: 18624461

A Hierarchical Construction Scheme for Accurate Potential Energy Surface Generation: an Application to the F+H2 Reaction

Overview
Journal J Chem Phys
Specialties Biophysics
Chemistry
Date 2008 Jul 16
PMID 18624461
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

We present a hierarchical construction scheme for accurate ab initio potential energy surface generation. The scheme is based on the observation that when molecular configuration changes, the variation in the potential energy difference between different ab initio methods is much smaller than the variation for potential energy itself. This means that it is easier to numerically represent energy difference to achieve a desired accuracy. Because the computational cost for ab initio calculations increases very rapidly with the accuracy, one can gain substantial saving in computational time by constructing a high accurate potential energy surface as a sum of a low accurate surface based on extensive ab initio data points and an energy difference surface for high and low accuracy ab initio methods based on much fewer data points. The new scheme was applied to construct an accurate ground potential energy surface for the FH(2) system using the coupled-cluster method and a very large basis set. The constructed potential energy surface is found to be more accurate on describing the resonance states in the FH(2) and FHD systems than the existing surfaces.

Citing Articles

Δ-Machine Learning to Elevate DFT-Based Potentials and a Force Field to the CCSD() Level Illustrated for Ethanol.

Nandi A, Pandey P, Houston P, Qu C, Yu Q, Conte R J Chem Theory Comput. 2024; 20(20):8807-8819.

PMID: 39361051 PMC: 11500277. DOI: 10.1021/acs.jctc.4c00977.


A Neural Network Potential Energy Surface and Quantum Dynamics Study of Ca(S) + H( = 0, = 0) → CaH + H Reaction.

Chen H, Mao Y, Yang Z, Chen M ACS Omega. 2024; 9(28):30804-30812.

PMID: 39035896 PMC: 11256353. DOI: 10.1021/acsomega.4c03465.


Neural network potentials for chemistry: concepts, applications and prospects.

Kaser S, Vazquez-Salazar L, Meuwly M, Topfer K Digit Discov. 2023; 2(1):28-58.

PMID: 36798879 PMC: 9923808. DOI: 10.1039/d2dd00102k.


Orbiting resonances in the F + HD (v = 0, 1) reaction at very low collision energies. A quantum dynamical study.

Saez-Rabanos V, Verdasco J, Herrero V Phys Chem Chem Phys. 2019; 21(27):15177-15186.

PMID: 31246200 PMC: 6751073. DOI: 10.1039/c9cp02718a.


Quantum Dynamics and Kinetics of the F + H and F + D Reactions at Low and Ultra-Low Temperatures.

De Fazio D, Aquilanti V, Cavalli S Front Chem. 2019; 7:328.

PMID: 31157204 PMC: 6527900. DOI: 10.3389/fchem.2019.00328.