Highly Luminescent Rb-Doped Cs4PbBr6 Nanocrystals in Borogermanate Glass

Author:

Valiev Damir1ORCID,Kharisova Rufina2ORCID,Babkina Anastasiia2,Zyryanova Ksenia2,Kuzmenko Natalia2,Sgibnev Yevgeniy3ORCID,Shelaev Artem3,Baryshev Alexander V.3ORCID

Affiliation:

1. School of Advanced Manufacturing Technology, National Research Tomsk Polytechnic University, Lenin Avenue 30, 634050 Tomsk, Russia

2. Research Center for Optical Material Engineering, ITMO University, Kronverksky Avenue 49, 197101 Saint-Petersburg, Russia

3. Dukhov Automatics Research Institute (VNIIA), Sushchevskaya Street, 22, 127055 Moscow, Russia

Abstract

For the first time, the synthesis, luminescent and structural properties of stable perovskite-type (Cs1−xRbx)4PbBr6 (R = Cs, Rb) nanocrystals are shown. In the absence of rubidium, Cs4PbBr6 and CsPbBr3 perovskite crystals precipitate in the ZnO–Na2O–B2O3–GeO2 glass matrix. With ascending rubidium content, the precipitation of (Cs,Rb)4PbBr6 nanocrystals is replaced by the Rb4PbBr6 nanocrystals nucleation. Nucleated nanocrystals exhibit an intense green luminescence. With an increase of the rubidium content, the luminescence maximum shifts to the blue region, the luminescence quantum yield increases from 28 to 51%, and the average decay time increases from 2 to 8 ns. Several assumptions have been made about the nature of the green luminescence of perovskite-like Cs4PbBr6 and (Cs,Rb)4PbBr6 crystals in glasses. It is concluded that the most probable cause is the impurity inclusions of CsPbBr3 and (Cs,Rb)PbBr3 crystals.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics

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