Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/44915
Title: On the role of charge transfer excitations in non-fullerene acceptors for organic photovoltaics
Authors: Giannini, Samuele
Sowood, Daniel J. C.
Cerda, Jesus
FREDERIX, Siebe 
Gruene, Jeannine
Londi, Giacomo
Marsh, Thomas
Ghosh, Pratyush
Duchemin, Ivan
Greenham, Neil C.
VANDEWAL, Koen 
D'Avino, Gabriele
Gillett, Alexander J.
Beljonne, David
Issue Date: 2024
Publisher: ELSEVIER SCI LTD
Source: Materials today, 80 , p. 308 -326
Abstract: Through the development of new non-fullerene electron acceptor (NFA) materials, such as Y6 and its molecular derivatives, the power conversion efficiencies of organic photovoltaics (OPVs) have now exceeded 19 %. However, despite this rapid progress, our fundamental understanding of the unique optical and electronic properties of these Y-series NFAs is lacking, and this currently limits progress in material design. In this work, we provide a detailed computational-experimental characterisation of the archetypal NFA, Y6. To explain the significant broadening and red shift of the absorption spectrum observed when moving from the solution phase to the solid state, we first rule out more typical causes, such as J-aggregation. Instead, by considering the role of charge transfer (CT) excitations and their mixing with Frenkel exciton (FE) states, we can computationally reproduce the experimental absorption spectra of Y6 with excellent accuracy. Using transient absorption spectroscopy, we provide evidence for this dense manifold of FE-CT hybrid electronic excitations in Y6 through the prominent sub-picosecond relaxation events following supra band gap excitation. Furthermore, through sub band gap excitation, we also find states with polaronic character in Y6 that are in a dynamic equilibrium with the FE-CT hybrid states. Magnetic resonance spectroscopies reveal that these polaronic states are polaron pairs, most likely located on neighbouring Y6 molecules, not free charge carriers, as has been previously suggested. Thus, this new understanding of how the solid-state packing motif directly controls the optical and electronic properties of Y-series NFAs opens the door to intelligently design NFA materials to further increase OPV performance.
Notes: Giannini, S; Beljonne, D (corresponding author), Univ Mons, Lab Chem Novel Mat, B-7000 Mons, Belgium.; Gillett, AJ (corresponding author), Univ Cambridge, Cavendish Lab, JJ Thomson Ave, Cambridge CB3 0HE, England.
samuele.giannini@cnr.it; alexander.gillett@liu.se;
david.beljonne@umons.ac.be
Keywords: Non-fullerene acceptors;Hybrid Frenkel-exciton/charge transfer states;Polaron pairs;Organic solar cells
Document URI: http://hdl.handle.net/1942/44915
ISSN: 1369-7021
e-ISSN: 1873-4103
DOI: 10.1016/j.mattod.2024.09.009
ISI #: 001367953400001
Rights: 2024 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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