Nuclear Quantum Effects in Gas-Phase 2-Fluoroethanol

03 October 2023, Version 2
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Torsional motions along the FCCO and HOCC dihedrals lead to the five unique conformations of 2-fluoroethanol, of which the gauche conformer along both dihedrals has the lowest energy. In this work, we explore how nuclear quantum effects (NQEs) are manifest in the structural parameters of the lowest energy conformer, in the intramolecular free energy landscape along the FCCO and HOCC dihedrals, and also in the infrared spectrum of the title molecule, through the use of path integral simulations. We have first developed a full dimensional potential energy surface using the reaction surface Hamiltonian framework. On this potential, we have carried out path integral molecular dynamics simulations at several temperatures starting from the minimum energy well to explore structural influences of NQEs including geometrical markers of the interaction between the OH and F groups. From the computed free energy landscapes, significant reduction of the torsional barrier is found at low temperature near the cis region of the dihedrals, which can be understood through the trends in the radii of gyration of the atomic ring polymers. We find that the inclusion of NQEs in the computation of infrared spectrum is important to obtain good agreement with the experimental band positions.

Keywords

Nuclear Quantum Effects
Large Amplitude Motions
Free Energy Profiles
Path Integral Simulations
Potential Energy Surface

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Supporting Materials for: Nuclear Quantum effects in Gas-Phase 2-Fluoroethanol
Description
A set of additional tables and figures are provided. These include a comparison of relative energies of minima at various levels of theory, harmonic frequencies of various stationary points at the MP2/aug-cc-pVTZ level of theory, errors in the fitted internals, umbrella sampling parameters, PES quality with a quartic potential, trends of key internals from PIMD simulations, distributions of selected internals in the minimum energy basins, 2D (phi1, phi2) distributions from umbrella sampling simulations, radii of gyration of the ring polymers of all atoms as a function of phi1 at 300 K and 50 K from umbrella sampling simulations, widths of the distributions of selected internals sampled in the minimum basins as a function of phi1 and a comparison of harmonic, classical and TRPMD spectra at 300 K. The Fortran 90 code for the PES for 2FE is available here: https://github.com/arandharamrinal/2FE.
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