2020 · 11 citations · 11 references
Electronic Excited StatePhotoluminescenceEngineeringTriplet Exciton TransferPhysicsOptical PropertiesNatural SciencesApplied PhysicsOrganic SemiconductorTriplet ExcitonsExcitation Energy TransferSinglet FissionChemistrySilicon On InsulatorSinglet Exciton FissionOptoelectronicsPhotovoltaics
Singlet fission can split a high energy singlet exciton and generate two lower energy triplet excitons. This process has shown near 200 percent triplet exciton yield. Sensitizing solar cells with singlet fission material, it can potentially increase the power conversion efficiency limit from 29 percent to 35 percent. Singlet fission in the tetracene is known to be efficient, and the energy of the triplet excitons are energetically matched to the silicon bandgap. In this work, we designed an optical measurement with an external magnetic field to determine the efficiencies of triplet exciton transfer from tetracene to silicon. Using this method, we have found that a passivation layer of 8 angstroms of hafnium oxynitride on silicon allows efficient triplet exciton transfer around 133 percent.
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Silicon solar cells: toward the efficiency limits
Lucio Claudio Andreani, Angelo Bozzola, Piotr Kowalczewski et al. · Advances in Physics X · 2018 · 461 citations · Full text
Sensitization of silicon by singlet exciton fission in tetracene
Markus Einzinger, Tony Wu, Julia F. Kompalla et al. · Nature · 2019 · 316 citations · Full text
Singlet Exciton Fission, Organic Semiconductor, Chemistry +1