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dc.contributor.authorSharma, Ashish
dc.contributor.authorAthanasopoulos, Stavros
dc.contributor.authorTapping, Patrick
dc.contributor.authorSabatini, Randy
dc.contributor.authorMcRae, Olivia
dc.contributor.authorMüllner, Markus
dc.contributor.authorKee, Tak
dc.contributor.authorLakhwani, Girish
dc.date.accessioned2024-08-29T23:21:32Z
dc.date.available2024-08-29T23:21:32Z
dc.date.issued2018en
dc.identifier.urihttps://hdl.handle.net/2123/33029
dc.description.abstractThe photophysical properties of conjugated materials can be strongly affected by the nature of intermolecular interactions. Toward this aim, supramolecular self-assembly facilitates efficient packing of molecules into ordered architectures, which allows efficient intermolecular coupling. However, the resulting electronic overlap imparts additional sensitivity to the disorder, predominantly because of the “nonlocal” origins of the photophysical properties. Understanding the nature and origin of the disorder in conjugated systems is a prerequisite to exploit the benefits of efficient intermolecular coupling. In this report, we utilize chirality as a marker to sensitively probe the nature of the disorder in thermodynamically assembled helical nanoaggregates of a chiral conjugated polymer poly[(9,9-di-n-octylfluorenyl-2,7-diyl)-alt-(benzothiadia- zole)] (PFBT). Surprisingly, we find that one-handed intermolecular coupling in helical PFBT aggregates leads to differences in the decay pathways of left- and right-handed excitations. We attribute the emergence of this sensitivity to the disorder in the excitonic coupling of flexible, nonplanar polymer chain conformations, likely predominant at the edges of the aggregate. Our findings shed insights into the effect of disorder on the photophysical properties, which open up new opportunities for sensitively exploring the links between intermolecular coupling and photophysical properties of conjugated systems.en
dc.language.isoenen
dc.publisherACSen
dc.relation.ispartofThe Journal of Physical Chemistry Cen
dc.rightsOtheren
dc.titleEmission Decay Pathways Sensitive to Circular Polarization of Excitationen
dc.typeArticleen
dc.subject.asrc0303 Macromolecular and Materials Chemistryen
dc.subject.asrc0306 Physical Chemistry (incl. Structural)en
dc.identifier.doi10.1021/acs.jpcc.8b07482
dc.type.pubtypeAuthor accepted manuscripten
dc.relation.arcCE170100026
dc.rights.other“This document is the Accepted Manuscript version of a Published Work that appeared in final form in The Journal of Physical Chemistry C, copyright © 2018 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://pubs.acs.org/doi/abs/10.1021/acs.jpcc.8b07482.”en
usyd.facultySeS faculties schools::Faculty of Science::School of Chemistryen
usyd.citation.volume122en
usyd.citation.issue42en
usyd.citation.spage23910en
usyd.citation.epage23916en
workflow.metadata.onlyNoen


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