In this work, we extend the perturbed matrix method combined with molecular dynamics simulations, to the modeling of Vibrational Circular Dichroism (VCD) spectra, including non-covalent excitonic coupling among distinct molecular chromophores. The method is applied to (R)-propylene oxide as a benchmark system, comparing infinite-dilution conditions with highly concentrated solutions in water and carbon tetrachloride. The calculated VCD spectra show very good agreement with experimental data and only weak concentration dependence. However, analysis of the excitonic eigenstates reveals the formation of transient, thermally populated excitonic clusters characterized by delocalized vibrational excitations and widely dispersed rotatory strengths. The equilibrium distribution and free-energy profile of these clusters are characterized, providing microscopic insights into excitonic effects in VCD spectra of soft condensed-phase systems.

Amadei, A., Aschi, M. (2026). Theoretical-computational modeling of the vibrational chirality of interacting chromophores: VCD signal and equilibrium properties of excitonic clusters. JOURNAL OF CHEMICAL PHYSICS ONLINE, 164(20) [10.1063/5.0326643].

Theoretical-computational modeling of the vibrational chirality of interacting chromophores: VCD signal and equilibrium properties of excitonic clusters

Andrea Amadei;
2026-01-01

Abstract

In this work, we extend the perturbed matrix method combined with molecular dynamics simulations, to the modeling of Vibrational Circular Dichroism (VCD) spectra, including non-covalent excitonic coupling among distinct molecular chromophores. The method is applied to (R)-propylene oxide as a benchmark system, comparing infinite-dilution conditions with highly concentrated solutions in water and carbon tetrachloride. The calculated VCD spectra show very good agreement with experimental data and only weak concentration dependence. However, analysis of the excitonic eigenstates reveals the formation of transient, thermally populated excitonic clusters characterized by delocalized vibrational excitations and widely dispersed rotatory strengths. The equilibrium distribution and free-energy profile of these clusters are characterized, providing microscopic insights into excitonic effects in VCD spectra of soft condensed-phase systems.
2026
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHEM-02/A - Chimica fisica
English
Con Impact Factor ISI
Amadei, A., Aschi, M. (2026). Theoretical-computational modeling of the vibrational chirality of interacting chromophores: VCD signal and equilibrium properties of excitonic clusters. JOURNAL OF CHEMICAL PHYSICS ONLINE, 164(20) [10.1063/5.0326643].
Amadei, A; Aschi, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/467423
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