Chiral supramolecular assembly to enhance the magneto-optical rotation of organic materials
Delage-Laurin, Leo and Reger, David and Suleymanov, Abdusalom A. and Nelson, Zachary and Minion, Louis and Kooi, Steven E. and Brandt, Jochen R. and Siligardi, Giuliano and Cameron, Robert P. and Wade, Jessica and Swager, Timothy M. and Fuchter, Matthew J. (2025) Chiral supramolecular assembly to enhance the magneto-optical rotation of organic materials. Nature Communications, 16. 9684. ISSN 2041-1723 (https://doi.org/10.1038/s41467-025-64663-w)
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Abstract
Connections between magnetic field induced optical activity and chirality have a rich and complicated history. Although the broken inversion symmetry of chiral molecules generates 'natural' optical activity, magnetic optical activity is generated by breaking time reversal symmetry. Therefore, molecular chirality is not expected to influence magnetic optical phenomena, such as Faraday rotation. Here we show that the chiral supramolecular assembly of polymers can result in large Faraday effects (Verdet constants = 105 °T-1m-1). This strong Faraday rotation, which is amongst the highest value known for organic materials, originates from the so-called Faraday B term. Typically, B term Faraday responses are weak. We demonstrate large amplification through excitonic coupling within the supramolecular assembly, where the chirality of the system controls the assembly formed. These observations provide an alternative means to enhance the Faraday rotation of low symmetry systems and clarify the role of chirality in previous reported materials.
ORCID iDs
Delage-Laurin, Leo, Reger, David, Suleymanov, Abdusalom A., Nelson, Zachary, Minion, Louis, Kooi, Steven E., Brandt, Jochen R., Siligardi, Giuliano, Cameron, Robert P.
ORCID: https://orcid.org/0000-0002-8809-5459, Wade, Jessica, Swager, Timothy M. and Fuchter, Matthew J.;
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Item type: Article ID code: 93809 Dates: DateEvent3 November 2025Published3 August 2025AcceptedSubjects: Science > Physics Department: Faculty of Science > Physics Depositing user: Pure Administrator Date deposited: 13 Aug 2025 10:33 Last modified: 08 Aug 2026 06:44 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/93809
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