Stable and efficient green hybrid light-emitting diodes (HLEDs) were fabricated from a highly emissive Mg(ii)-tetraphenyl ethylene derivative metal-organic framework embedded in a polystyrene matrix (Mg-TBC MOF@PS). The photoluminescence quantum yield (ϕ) of the material, >80%, remains constant upon polymer embedment. The resulting HLEDs featured high luminous efficiencies of >50 lm W−1 and long lifetimes of >380 h, making them among the most stable MOF-based HLEDs. The significance of this work relies on the combination of many features, such as the abundance of the metal ion, the straightforward scalability of the synthetic protocol, the great ϕ reached upon phosphor fabrication, and the state-of-the-art HLED performances.

Stable and efficient rare-earth free phosphors based on an Mg(ii) metal–organic framework for hybrid light-emitting diodes

Cavinato, Luca M.
Co-first
;
2024-01-01

Abstract

Stable and efficient green hybrid light-emitting diodes (HLEDs) were fabricated from a highly emissive Mg(ii)-tetraphenyl ethylene derivative metal-organic framework embedded in a polystyrene matrix (Mg-TBC MOF@PS). The photoluminescence quantum yield (ϕ) of the material, >80%, remains constant upon polymer embedment. The resulting HLEDs featured high luminous efficiencies of >50 lm W−1 and long lifetimes of >380 h, making them among the most stable MOF-based HLEDs. The significance of this work relies on the combination of many features, such as the abundance of the metal ion, the straightforward scalability of the synthetic protocol, the great ϕ reached upon phosphor fabrication, and the state-of-the-art HLED performances.
2024
53
30
12455
12459
Atoini, Youssef; Cavinato, Luca M.; Schmitt, Jean-Louis; Van Opdenbosch, Daniel; Costa, Rubén D.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2062576
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