Metal halide perovskites are attracting great interest for the fabrication of light-emitting devices encompassing light-emitting diodes, lasers, and scintillators. As the field develops, perovskite doping emerges as a promising way to enrich the material functionalities and enhance the luminescence yield and tunability. While Mn+2 addition has been well explored, doping with lanthanides has received less attention, even though their intense and line-like luminescence is interesting for a wide range of applications. In this work, we study the doping of NMA2PbBr4 layered perovskites with Eu3+ and Eu3+ tetrakis β-diketonate complex. By exploiting the antenna effect of the naphthalene-based functional cation (NMA = 1-naphtylmethylammonium), direct sensitization of Eu3+ is obtained; nevertheless, it is not very efficient due to the non-optimal energy level alignment with the resonance acceptor level of the lanthanide. Protection of Eu3+ in the form of tetrakis β-diketonate complex grants a more ideal coordination geometry and energetic landscape for the energy transfer to europium in the perovskite matrix, allowing for a nearly 30-fold improvement in luminescence yield. This work sets the basis for new synthetic strategies for the design of functional perovskite/lanthanide host-guest systems with improved luminescence properties.

Layered Perovskite Doping with Eu3+and β-diketonate Eu3+ Complex / Cortecchia D.; Mroz W.; Folpini G.; Borzda T.; Leoncino L.; Alvarado-Leanos A.L.; Speller E.M.; Petrozza A.. - In: CHEMISTRY OF MATERIALS. - ISSN 0897-4756. - ELETTRONICO. - 33:7(2021), pp. 2289-2297. [10.1021/acs.chemmater.0c04097]

Layered Perovskite Doping with Eu3+and β-diketonate Eu3+ Complex

Cortecchia D.
Primo
;
2021

Abstract

Metal halide perovskites are attracting great interest for the fabrication of light-emitting devices encompassing light-emitting diodes, lasers, and scintillators. As the field develops, perovskite doping emerges as a promising way to enrich the material functionalities and enhance the luminescence yield and tunability. While Mn+2 addition has been well explored, doping with lanthanides has received less attention, even though their intense and line-like luminescence is interesting for a wide range of applications. In this work, we study the doping of NMA2PbBr4 layered perovskites with Eu3+ and Eu3+ tetrakis β-diketonate complex. By exploiting the antenna effect of the naphthalene-based functional cation (NMA = 1-naphtylmethylammonium), direct sensitization of Eu3+ is obtained; nevertheless, it is not very efficient due to the non-optimal energy level alignment with the resonance acceptor level of the lanthanide. Protection of Eu3+ in the form of tetrakis β-diketonate complex grants a more ideal coordination geometry and energetic landscape for the energy transfer to europium in the perovskite matrix, allowing for a nearly 30-fold improvement in luminescence yield. This work sets the basis for new synthetic strategies for the design of functional perovskite/lanthanide host-guest systems with improved luminescence properties.
2021
Layered Perovskite Doping with Eu3+and β-diketonate Eu3+ Complex / Cortecchia D.; Mroz W.; Folpini G.; Borzda T.; Leoncino L.; Alvarado-Leanos A.L.; Speller E.M.; Petrozza A.. - In: CHEMISTRY OF MATERIALS. - ISSN 0897-4756. - ELETTRONICO. - 33:7(2021), pp. 2289-2297. [10.1021/acs.chemmater.0c04097]
Cortecchia D.; Mroz W.; Folpini G.; Borzda T.; Leoncino L.; Alvarado-Leanos A.L.; Speller E.M.; Petrozza A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/904384
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