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Título
Coronene: a model for ultrafast dynamics in graphene nanoflakes and PAHs [Dataset]
Autor(es)
Palabras clave
Molecular dynamics
Coronene
Clasificación UNESCO
2306.02 Hidrocarburos Aromáticos
Fecha de publicación
2023
Editor
Royal Society of Chemistry
Citación
Martin Santa Daria, A., Gonzalez-Sanchez, L. and Gómez, S. (2023). Coronene: a model for ultrafast dynamics in graphene nanoflakes and PAHs. Phys. Chem. Chem. Phys. [Dataset]
Resumen
[EN] Assuming a delta pulse excitation, quantum wavepackets are propagated on the excited state manifold in the energy range from 3.4-5.0 eV for coronene and 2.4-3.5 eV for circumcoronene to study the time evolution of the states as well as their lifetimes. The full-dimensional (102 and 210 degrees of freedom for coronene and circumcoronene respectively) non-adiabatic dynamics simulated with the ML-MCTDH method on twelve coupled singlet electronic states show that the different absorption spectra are only due to electronic delocalisation effects that change the excited state energies, but the structural dynamics in both compounds are identical. Breathing and tilting motions drive the decay dynamics of the electronic states away from the Frank-Condon region independently of the size of the aromatic system. This promising result allows the use of coronene as a model system for the dynamics of larger polycyclic aromatic hydrocarbons (PAHs) and graphene one dimensional sheets or nanoflakes.
Citado en
Phys. Chem. Chem. Phys. DOI: 10.1039/D3CP03656A. http://hdl.handle.net/10366/153090
URI
DOI
10.14201/gredos.153091
Es parte de
Tabla de contenidos
1-frequency calculations at the optimised geometries of both compounds. 2-quantics inputs. 3- operator files and initial con ditions for the on-the-fly TSH dynamics
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Descripción:
frequency calculations at the optimised geometries of both compounds, quantics inputs, operator files and initial con- ditions for the on-the-fly TSH dynamics