Abstract
We propose design rules for building organic molecular bridges that enable coherent long-distance triplet-exciton transfer. Using these rules, we describe example polychromophoric structures with low inner-sphere exciton reorganization energies, low static and dynamic disorder, and enhanced π-stacking interactions between nearest-neighbor chromophores. These features lead to triplet-exciton eigenstates that are delocalized over several units at room temperature. The use of such bridges in donor-bridge-acceptor assemblies enables fast triplet-exciton transport over very long distances that is rate-limited by the donor-bridge injection and bridge-acceptor trapping rates.
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CITATION STYLE
Mavrommati, S. A., & Skourtis, S. S. (2022). Molecular Wires for Efficient Long-Distance Triplet Energy Transfer. Journal of Physical Chemistry Letters, 13(41), 9679–9687. https://doi.org/10.1021/acs.jpclett.2c02616
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