Pentacene–Bridge Interactions in an Axially Chiral Binaphthyl Pentacene Dimer
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Open Access
Type
ArticleAuthor/s
Sharma, AshishAthanasopoulos, Stavros
Kumarasamy, Elango
Phansa, Chanakarn
Asadpoordarvish, Amir
Sabatini, Randy P.
Pandya, Raj
Parenti, Kaia R.
Sanders, Samuel N.
McCamey, Dane R.
Campos, Luis M.
Rao, Akshay
Tayebjee, Murad J. Y.
Lakhwani, Girish
Abstract
Molecular chirality can be exploited as a sensitive reporter of the nature of intra-and inter-chromophore interactions in π-conjugated systems. In this report, we design an intramolecular singlet fission (iSF) based pentacene dimer with an axially chiral binaphtyl bridge ...
See moreMolecular chirality can be exploited as a sensitive reporter of the nature of intra-and inter-chromophore interactions in π-conjugated systems. In this report, we design an intramolecular singlet fission (iSF) based pentacene dimer with an axially chiral binaphtyl bridge (2,2'-(2,2'-dimethoxy-[1,1'-binaphthalene]-3,3'-diyl) n-octyl-di-isopropyl silylethynyl dipentacene, BNBP) to utilize its chiroptical response as a marker of iSF chromophore-bridge-chromophore (SFC-β-SFC) interactions. The axial chirality of the bridge enforces significant one-handed excitonic coupling of the pentacene monomer units; as such, BNBP exhibits significant chiroptical response in the ground- and excited-states. We analyze the chiroptical response of BNBP using the exciton coupling method and quadratic response density functional theory calculations to reveal that higher energy singlet transitions in BNBP involve significant delocalization of the electronic density on the bridging binaphthyl group. Our results highlight the promising application of chiroptical techniques to investigate the nature of SFC-β-SFC interactions that impact singlet fission dynamics.
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See moreMolecular chirality can be exploited as a sensitive reporter of the nature of intra-and inter-chromophore interactions in π-conjugated systems. In this report, we design an intramolecular singlet fission (iSF) based pentacene dimer with an axially chiral binaphtyl bridge (2,2'-(2,2'-dimethoxy-[1,1'-binaphthalene]-3,3'-diyl) n-octyl-di-isopropyl silylethynyl dipentacene, BNBP) to utilize its chiroptical response as a marker of iSF chromophore-bridge-chromophore (SFC-β-SFC) interactions. The axial chirality of the bridge enforces significant one-handed excitonic coupling of the pentacene monomer units; as such, BNBP exhibits significant chiroptical response in the ground- and excited-states. We analyze the chiroptical response of BNBP using the exciton coupling method and quadratic response density functional theory calculations to reveal that higher energy singlet transitions in BNBP involve significant delocalization of the electronic density on the bridging binaphthyl group. Our results highlight the promising application of chiroptical techniques to investigate the nature of SFC-β-SFC interactions that impact singlet fission dynamics.
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Date
2021Source title
The Journal of Physical Chemistry AVolume
125Issue
33Publisher
American Chemical SocietyFunding information
ARC CE170100026Licence
Copyright All Rights ReservedFaculty/School
Faculty of Science, School of ChemistryShare