Vibronic Couplings and Temperature Effects in the Ultrafast Dynamics of a Charge-Transfer Complex
arXiv:2303.03905 · doi:10.1021/acs.jpca.3c03709
Abstract
The ultrafast dynamics of charge carriers in organic donor-acceptor interfaces are of primary importance to understanding the fundamental properties of these systems. In this work, we focus on a charge-transfer complex formed by quaterthiophene -doped by tetrafluoro-tetracyanoquinodimethane and investigate electron dynamics and vibronic interactions also at finite temperatures by applying a femtosecond pulse in resonance with the two lowest-energy excitations of the system with perpendicular and parallel polarization with respect to the interface. The adopted \textit{ab initio} formalism based on real-time time-dependent density-functional theory coupled to Ehrenfest dynamics enables monitoring the dynamical charge transfer across the interface and assessing the role played by the nuclear motion. Our results show that the strong intermolecular interactions binding the complex already in the ground state influence the dynamics, too. The analysis of the nuclear motion involved in these processes reveals the participation of different vibrational modes depending on the electronic states stimulated by the resonant pulse. Coupled donor-acceptor modes mostly influence the excited state polarized across the interface, while intramolecular vibrations in the donor molecule dominate the excitation in the orthogonal direction. The results obtained at finite temperatures are overall consistent with this picture, although thermal disorder contributes to slightly decreasing interfacial charge transfer.
References in corpus (10)
- Simulating pump-probe photo-electron and absorption spectroscopy on the attosecond time-scale with time-dependent density-functional theory
- Non-linear phenomena in time-dependent density-functional theory: What Rabi physics can teach us
- Ultrafast dynamics of photoinduced charge separation
- Progress and Challenges in Ab Initio Simulations of Quantum Nuclei in Weakly Bonded Systems
- Long-Range Order Promotes Charge-Transfer Excitations in Donor/Acceptor Co-Crystals
- Laser-Controlled Charge Transfer in a Two-Dimensional Organic/Inorganic Optical Coherent Nanojunction
- Exploring organic semiconductors in solution: The effects of solvation, alkylization, and doping
- Laser-Induced Electronic and Vibronic Dynamics in the Pyrene Molecule and its Cation
- Coherent Control of Vibrational State Population in a Nonpolar Molecule
- Ab initio simulation of laser-induced electronic and vibrational coherence