Chemical Design Rules for Non‐Fullerene Acceptors in Organic Solar Cells

Markina, Anastasia and Lin, Kun‐Han and Liu, Wenlan and Poelking, Carl and Firdaus, Yuliar and Villalva, Diego Rosas and Khan, Jafar I. and Paleti, Sri H. K. and Harrison, George T. and Gorenflot, Julien and Zhang, Weimin and De Wolf, Stefaan and McCulloch, Iain and Anthopoulos, Thomas D. and Baran, Derya and Laquai, Frédéric and Andrienko, Denis (2021) Chemical Design Rules for Non‐Fullerene Acceptors in Organic Solar Cells. Advanced Energy Materials, 11 (44). pp. 1-11. ISSN 1614-6832

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Abstract

Efficiencies of organic solar cells have practically doubled since the development of non-fullerene acceptors (NFAs). However, generic chemical design rules for donor-NFA combinations are still needed. Such rules are proposed by analyzing inhomogeneous electrostatic fields at the donor–acceptor interface. It is shown that an acceptor–donor–acceptor molecular architecture, and molecular alignment parallel to the interface, results in energy level bending that destabilizes the charge transfer state, thus promoting its dissociation into free charges. By analyzing a series of PCE10:NFA solar cells, with NFAs including Y6, IEICO, and ITIC, as well as their halogenated derivatives, it is suggested that the molecular quadrupole moment of ≈75 Debye Å balances the losses in the open circuit voltage and gains in charge generation efficiency.

Item Type: Article
Subjects: Military Sciences > Chemical, Biological, & Radiological Warfare
Depositing User: Saepul Mulyana
Date Deposited: 12 Feb 2026 02:49
Last Modified: 12 Feb 2026 02:49
URI: https://karya.brin.go.id/id/eprint/57531

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