Artikel

Vibrational circular dichroism spectroscopy with a classical polarizable force field: alanine in the gas and condensed phases

05.03.2024

The development of a methodology based on polarizable force fields is presented to compute vibrational circular dichroism spectra in the gas and condensed phases, both crystalline and solvated. The vibrational spectra are obtained from the Fourier transform of time correlation functions of electric and magnetic dipole moments generated along classical molecular dynamics trajectories with a polarizable force field.


Abstract

Polarizable force fields are an essential component for the chemically accurate modeling of complex molecular systems with a significant degree of fluxionality, beyond harmonic or perturbative approximations. In this contribution we examine the performance of such an approach for the vibrational spectroscopy of the alanine amino acid, in the gas and condensed phases, from the Fourier transform of appropriate time correlation functions generated along molecular dynamics (MD) trajectories. While the infrared (IR) spectrum only requires the electric dipole moment, the vibrational circular dichroism (VCD) spectrum further requires knowledge of the magnetic dipole moment, for which we provide relevant expressions to be used with polarizable force fields. The AMOEBA force field was employed here to model alanine in the neutral and zwitterionic isolated forms, solvated by water or nitrogen, and as a crystal. Within this framework, comparison of the electric and magnetic dipole moments to those obtained with nuclear velocity perturbation theory based on density-functional theory for the same MD trajectories are found to agree well with one another. The statistical convergence of the IR and VCD spectra is examined and found to be more demanding in the latter case. Comparisons with experimental frequencies are also provided for the condensed phases.

Verwandte Artikel
Vibrational circular dichroism spectroscopy with a classical polarizable force field: alanine in the gas and condensed phases
In Kürze
Vibrational circular dichroism spectroscopy with a classical polarizable force field: alanine in the gas and condensed phases
Ehrungen, Karriere
Vibrational circular dichroism spectroscopy with a classical polarizable force field: alanine in the gas and condensed phases
Aus den Fachgruppen
Vibrational circular dichroism spectroscopy with a classical polarizable force field: alanine in the gas and condensed phases
EuChemS Policy Workshop „PFAS”
Vibrational circular dichroism spectroscopy with a classical polarizable force field: alanine in the gas and condensed phases
Bafög beantragen

Das könnte Sie auch interessieren

GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

In Kürze

GÖCH

Termin vormerken: Generalversammlung am 21. September Die diesjährige Generalversammlung ist im Rahmen der Chemietage am...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Ehrungen, Karriere

Service

Ehrungen Finnian Freeling, Dr.: Promotionspreis Wasserchemie der Wasserchemischen Gesellschaft, Fachgruppe der GDCh, für...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Aus den Fachgruppen

GDCh

Bauchemie Neuer Vorstand Die GDCh-Fachgruppe Bauchemie hat ihren Vorstand für die Amtszeit 1. Januar 2026 bis 31. Dezemb...

30.04.2026