Item - Molecular quantum-dot orbital hybridisation supports efficient endothermic singlet exciton fission - Springer Nature - Figshare
Sakamoto Masanori
2026
2026/5/5
Ireland, Dublin
figshare
CC BY 4.0

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Item - Molecular quantum-dot orbital hybridisation supports efficient endothermic singlet exciton fission - Springer Nature - Figshare

UV-Vis-NIR absorption, Fluorecense, Transient absorption, NMR spectra, XRD patterns

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2
Quantum DotSinglet Fission

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2
Nanochemistry and Supramolecular ChemistryPhysical Chemistry of Materials

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Item - Molecular quantum-dot orbital hybridisation supports efficient endothermic singlet exciton fission - Springer Nature - Figshare

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DOI: 10.6084/M9.FIGSHARE.31834054.V1
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Molecular quantum-dot orbital hybridization supports efficient endothermic singlet exciton fission

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Singlet exciton fission (SF), in which one singlet exciton (S1) generates two triplet excitons (T1), is one of the few available options for exceeding the theoretical limit of solar energy use, the so-called Shockley–Queisser limit. Although most SF systems applicable to Si solar cells exhibit a the...
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10.1038/S41566-026-01908-0
ISSN:1749-4885