Triplet-triplet annihilation (TTA) based up-conversion is a promising strategy for light harvesting the low-energy tail of the solar spectrum with photovoltaic technologies. Here, we present a bi-component system for photon managing via TTA that allows bypassing the classical statistic limit of 2/5 in the singlet generation, achieving a near unitary conversion efficiency. This result is obtained because of the peculiar relative position of the triplet and singlet energy levels of perylene, used as up-converter and emitter. The system shows a record red-to-blue external up-conversion yield of ∼10% under an irradiance of 1 sun. This journal is
Hoseinkhani, S., Tubino, R., Meinardi, F., Monguzzi, A. (2015). Achieving the photon up-conversion thermodynamic yield upper limit by sensitized triplet-triplet annihilation. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 17(6), 4020-4024 [10.1039/c4cp03936j].
Achieving the photon up-conversion thermodynamic yield upper limit by sensitized triplet-triplet annihilation
TUBINO, RICCARDOSecondo
;MEINARDI, FRANCESCO
Penultimo
;MONGUZZI, ANGELO MARIA
Ultimo
2015
Abstract
Triplet-triplet annihilation (TTA) based up-conversion is a promising strategy for light harvesting the low-energy tail of the solar spectrum with photovoltaic technologies. Here, we present a bi-component system for photon managing via TTA that allows bypassing the classical statistic limit of 2/5 in the singlet generation, achieving a near unitary conversion efficiency. This result is obtained because of the peculiar relative position of the triplet and singlet energy levels of perylene, used as up-converter and emitter. The system shows a record red-to-blue external up-conversion yield of ∼10% under an irradiance of 1 sun. This journal isFile | Dimensione | Formato | |
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