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Dexter energy transfer and transport (DET) are of broad interest in energy science, and DET rates depend on electronic couplings between donor and acceptor species. DET couplings are challenging to compute since they originate from both one- and two-particle interactions, and the strength of this interaction drops approximately exponentially with donor-acceptor distances. Using adiabatic energy splitting to compute DET couplings has advantages because adiabatic states can be calculated directly using conventional quantum chemical methods. We describe a minimum energy splitting method to compute the DET coupling by altering molecular geometries to drive the systems into a T
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Shuming Bai
Chinese Academy of Sciences
Peng Zhang
Duke University
David N. Beratan
Duke University
The Journal of Physical Chemistry A
Duke University
Chinese Academy of Sciences
University of Chinese Academy of Sciences
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Bai et al. (Fri,) studied this question.
synapsesocial.com/papers/68e613c2b6db6435875a69c2 — DOI: https://doi.org/10.1021/acs.jpca.3c08146