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Long-lived charge carrier photogeneration in a cooperative supramolecular double-cable polymer

Abstract: A newly designed C3-symmetric disc-shaped chromophore, BTT(NDI)3, features electron accepting naphtha lene diimides linked to an electron donor BTT core. BTT(NDI))3 self-assembles in apolar solvents into highly ordered, chiral supramolecular fibers through [pi-pi] and 3-fold hydrogen-bonding interactions. This leads to a cooperative formation of plane-to plane stacking of BTTs and J-aggregation of the outer NDIs. Such a structure ensures high charge mobility. Only photoexcitation of BTT in the BTT(NDI)3 polymers triggers a unidirectional electron transfer from BTT to NDI and results in (BTT*+ -NDI*¯) lifetimes that are by up to 3 orders of magnitude longer compared to (NDI*+ -NDI*¯) that is formed upon NDI photoexcitation. A multiphasic decay implies ambipolar pathways for charge carriers, that is, electron and hole delocalization along the respective BTT and NDI stacks. Our supramolecular approach offers potential for developing functional supramolecular polymers with continuous pathways for electrons and holes and, in turn, minimizing charge recombination losses in organic photovoltaic devices.

 Authorship: Joseph J., Berrocal J.A., Casellas N.M., Guldi D.M., Torres T., García-Iglesias M.,

 Fuente: Journal of the American Chemical Society, 2024, 146(44), 30272-30280

 Publisher: American Chemical Society

 Publication date: 06/11/2024

 No. of pages: 9

 Publication type: Article

 DOI: 10.1021/jacs.4c09637

 ISSN: 0002-7863,1520-5126

 Spanish project: PID2021-125429NA-I00

 Publication Url: https://doi.org/10.1021/jacs.4c09637

Authorship

JOSEPH, JAN

AUGUSTO BERROCAL, JOSÉ

MUÑOZ CASELLAS, NICOLÁS

GUILDI, DIRK M.

TORRES CEBADA, TOMÁS