Strong exciton-photon and exciton-exciton coupling and its effects on molecular photophysics

dc.contributor.authorYu, Yi
dc.date.accessioned2022-12-05T10:01:54Z
dc.date.available2022-12-05T10:01:54Z
dc.date.issued2022-12-05
dc.description.abstractThe energy of molecular states and their transition dynamics form the key properties to understand the photophysics of organic molecules. Strong exciton-photon and exciton-exciton couplings enable the possibility to manipulate these properties without changing the chemical structures. This is due to the formation of new energy states. Furthermore, the transition dynamics between the new-generated and original molecular states need to be considered. This dissertation describes the preparation, characterization and simulation of strongly coupled systems and their use for studying molecular photophysical properties. An energy-inverted singlet-triplet system was achieved by strong exciton-photon coupling. This opens up a new pathway to allow a barrier-free reverse intersystem crossing in organic dyes. In addition, the manipulation of excimer emission by strong exciton-photon coupling was analyzed. It was found that the ratio of the intensity of polaritonic and excimer emission depended on the detuning between the molecular and photonic contributions of the hybrid light-matter state, as well as the energy position of that state. Finally, a strongly exciton-exciton coupled system was realized through the formation of J-aggregates. In the aggregates, the exciton delocalization counteracted the energy gap law and led to an innovative strategy for generating highly emissive dyes in the near-infrared regime. The research results and analysis in this thesis contribute to a deeper understanding of the fundamental molecular photophysics in the strong exciton-photon and exciton-exciton coupling regimes. This paves the way for many potential future applications, such as light emitting devices and photothermal therapies.en
dc.gup.defencedate2023-01-18
dc.gup.defenceplace18 januari, 2023 kl. 9:00 i 10:an, Institutionen för kemi och molekylärbiologi, Kemigården 4en
dc.gup.departmentDepartment of Chemistry and Molecular Biology ; Institutionen för kemi och molekylärbiologien
dc.gup.dissdb-fakultetMNF
dc.gup.mailxyuyig@gu.seen
dc.gup.originUniversity of Gothenburg, Faculty of Scienceen
dc.identifier.isbn978-91-8009-700-0 (PDF)
dc.identifier.urihttps://hdl.handle.net/2077/74095
dc.language.isoengen
dc.relation.haspart1. Yu, Y., Mallick, S., Wang, M., & Börjesson, K. (2021). Barrier-free reverse-intersystem crossing in organic molecules by strong light-matter coupling. Nature communications, 12(1), 1-8. https://www.nature.com/articles/s41467-021-23481-6#citeasen
dc.relation.haspart2. Mony, J.‡, Yu, Y.‡, Schäfer, C., Mallick, S., Kushwaha, K., & Börjesson, K. (2022). Interplay between Polaritonic and Molecular Trap States. The Journal of Physical Chemistry C. https://pubs.acs.org/doi/full/10.1021/acs.jpcc.2c01239en
dc.relation.haspart3. Cravcenco, A., Yu, Y., Edhborg, F., Goebel, J. F., Takacs, Z., Yang, Y., ... & Borjesson, K. (2021). Exciton delocalization counteracts the energy gap: a new pathway toward NIR-emissive dyes. Journal of the American Chemical Society, 143(45), 19232-19239. https://pubs.acs.org/doi/full/10.1021/jacs.1c10654en
dc.subjectStrong couplingen
dc.subjecttriplet transition dynamicsen
dc.subjectTADFsen
dc.subjectaggregate statesen
dc.titleStrong exciton-photon and exciton-exciton coupling and its effects on molecular photophysicsen
dc.typeTextswe
dc.type.degreeDoctor of Philosophyen
dc.type.svepDoctoral thesiseng

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