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- W2497026920 endingPage "4273" @default.
- W2497026920 startingPage "4263" @default.
- W2497026920 abstract "Due to the promise of significantly enhanced photovoltaic efficiencies, significant effort has been directed toward understanding and controlling the singlet fission mechanism. Although accurate quantum chemical calculations would provide a detail-rich view of the singlet fission mechanism, this is complicated by the multiexcitonic nature of one of the key intermediates, the 1(TT) state. Being described as two simultaneous and singlet-coupled triplet excitations on a pair of nearest neighbor monomers, the 1(TT) state is inherently a multielectronic excitation. This fact renders most single-reference ab initio quantum chemical methods incapable of providing accurate results. This paper serves two purposes: (1) to demonstrate that the multiexciton states in singlet fission materials can be described using a spin-only Hamiltonian and with each monomer treated as a biradical and (2) to propose a very simple procedure for extracting the values for this Hamiltonian from single-reference calculations. Numerical examples are included for a number of different systems, including dimers, trimers, tetramers, and a cluster comprised of seven chromophores." @default.
- W2497026920 created "2016-08-23" @default.
- W2497026920 creator A5078991971 @default.
- W2497026920 date "2016-08-11" @default.
- W2497026920 modified "2023-10-16" @default.
- W2497026920 title "From Model Hamiltonians to ab Initio Hamiltonians and Back Again: Using Single Excitation Quantum Chemistry Methods To Find Multiexciton States in Singlet Fission Materials" @default.
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- W2497026920 doi "https://doi.org/10.1021/acs.jctc.6b00545" @default.
- W2497026920 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/27472260" @default.