Recent emergence of photon upconversion based on triplet energy migration in molecular assemblies

An emerging field of triplet energy migration-based photon upconversion (TEM-UC) is reviewed. Highly efficient photon upconversion has been realized in a wide range of chromophore assemblies, such as non-solvent liquids, ionic liquids, amorphous solids, gels, supramolecular assemblies, molecular cry...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2016-01, Vol.52 (31), p.5354-5370
Hauptverfasser: Yanai, Nobuhiro, Kimizuka, Nobuo
Format: Artikel
Sprache:eng
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Zusammenfassung:An emerging field of triplet energy migration-based photon upconversion (TEM-UC) is reviewed. Highly efficient photon upconversion has been realized in a wide range of chromophore assemblies, such as non-solvent liquids, ionic liquids, amorphous solids, gels, supramolecular assemblies, molecular crystals, and metal-organic frameworks (MOFs). The control over their assembly structures allows for unexpected air-stability and maximum upconversion quantum yield at weak solar irradiance that has never been achieved by the conventional molecular diffusion-based mechanism. The introduction of the "self-assembly" concept offers a new perspective in photon upconversion research and triplet exciton science, which show promise for numerous applications ranging from solar energy conversion to chemical biology.
ISSN:1359-7345
1364-548X
DOI:10.1039/c6cc00089d