Directing charge transfer in perylene based light-harvesting antenna molecules

Directing energy and charge transfer processes in light-harvesting antenna systems is quintessential for optimizing the efficiency of molecular devices for artificial photosynthesis. In this work, we report a novel synthetic method to construct two regioisomeric antenna molecules (1-D2A2 and 7-D2A2)...

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Veröffentlicht in:The Journal of chemical physics 2020-10, Vol.153 (14), p.144302-144302
Hauptverfasser: Philip, Abbey M., Hsu, Chao Chun, Wei, Zimu, Fridriksson, Magnus B., Grozema, Ferdinand C., Jager, Wolter F.
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Sprache:eng
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Zusammenfassung:Directing energy and charge transfer processes in light-harvesting antenna systems is quintessential for optimizing the efficiency of molecular devices for artificial photosynthesis. In this work, we report a novel synthetic method to construct two regioisomeric antenna molecules (1-D2A2 and 7-D2A2), in which the 4-(n-butylamino)naphthalene monoimide energy and electron donor is attached to the perylene monoimide diester (PMIDE) acceptor at the 1- and 7-bay positions, respectively. The non-symmetric structure of PMIDE renders a polarized distribution of the frontier molecular orbitals along the long axis of this acceptor moiety, which differentiates the electron coupling between the donor, attached at either the 1- or the 7-position, and the acceptor. We demonstrate that directional control of the photo-driven charge transfer process has been obtained by engineering the molecular structure of the light-harvesting antenna molecules.
ISSN:0021-9606
1089-7690
DOI:10.1063/5.0021454