English

Tuning nonradiative lifetimes via molecular aggregation

Chemical Physics 2017-11-01 v1

Abstract

We show that molecular aggregation can strongly influence the nonradiative decay (NRD) lifetime of an electronic excitation. As a demonstrative example, we consider a transition-dipole-dipole-interacting dimer whose monomers have harmonic potential energy surfaces (PESs). Depending on the position of the NRD channel (qnrq_{\rm nr}), we find that the NRD lifetime (τnrdim\tau_{\rm nr}^{\rm dim}) can exhibit a completely different dependence on the intermolecular-interaction strength. We observe that (i) for qnrq_{\rm nr} near the Franck-Condon region, τnrdim\tau_{\rm nr}^{\rm dim} increases with the interaction strength; (ii) for qnrq_{\rm nr} near the minimum of the monomer excited PES, the intermolecular interaction has little influence on τnrdim\tau_{\rm nr}^{\rm dim}; (iii) for qnrq_{\rm nr} near the classical turning point of the monomer nuclear dynamics, on the other side of the minimum, τnrdim\tau_{\rm nr}^{\rm dim} decreases with the interaction strength. Our findings suggest design principles for molecular systems where a specific fluorescence quantum yield is desired.

Keywords

Cite

@article{arxiv.1611.09115,
  title  = {Tuning nonradiative lifetimes via molecular aggregation},
  author = {A. Celestino and A. Eisfeld},
  journal= {arXiv preprint arXiv:1611.09115},
  year   = {2017}
}
R2 v1 2026-06-22T17:06:20.426Z