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Enhanced visible light absorption in layered Cs3Bi2Br9 through mixed-valence Sn(ii)/Sn(iv) doping

Publication available at: https://doi.org/10.1039/D1SC03775G
Title: Enhanced visible light absorption in layered Cs3Bi2Br9 through mixed-valence Sn(ii)/Sn(iv) doping
Authors: Krajewska, CJ
Kavanagh, SR
Zhang, L
Kubicki, DJ
Dey, K
Galkowski, K
Grey, CP
Stranks, SD
Walsh, A
Scanlon, DO
Palgrave, RG
Item Type: Journal Article
Abstract: Lead-free halides with perovskite-related structures, such as the vacancy-ordered perovskite Cs3Bi2Br9, are of interest for photovoltaic and optoelectronic applications. We find that addition of SnBr2 to the solution-phase synthesis of Cs3Bi2Br9 leads to substitution of up to 7% of the Bi(III) ions by equal quantities of Sn(II) and Sn(IV). The nature of the substitutional defects was studied by X-ray diffraction, 133Cs and 119Sn solid state NMR, X-ray photoelectron spectroscopy and density functional theory calculations. The resulting mixed-valence compounds show intense visible and near infrared absorption due to intervalence charge transfer, as well as electronic transitions to and from localised Sn-based states within the band gap. Sn(II) and Sn(IV) defects preferentially occupy neighbouring B-cation sites, forming a double-substitution complex. Unusually for a Sn(II) compound, the material shows minimal changes in optical and structural properties after 12 months storage in air. Our calculations suggest the stabilisation of Sn(II) within the double substitution complex contributes to this unusual stability. These results expand upon research on inorganic mixed-valent halides to a new, layered structure, and offer insights into the tuning, doping mechanisms, and structure–property relationships of lead-free vacancy-ordered perovskite structures.
Issue Date: 5-Oct-2021
Date of Acceptance: 4-Oct-2021
URI: http://hdl.handle.net/10044/1/99578
DOI: 10.1039/d1sc03775g
ISSN: 2041-6520
Publisher: Royal Society of Chemistry
Start Page: 14686
End Page: 14699
Journal / Book Title: Chemical Science
Volume: 12
Issue: 44
Copyright Statement: © 2021 The Author(s). Published by the Royal Society of Chemistry
Keywords: Science & Technology
Physical Sciences
Chemistry, Multidisciplinary
Chemistry
INITIO MOLECULAR-DYNAMICS
BAND-GAP
OPTICAL-PROPERTIES
PHASE-TRANSITION
CHARGE-TRANSFER
PEROVSKITES
CS3SB2I9
ENERGY
PHOTOLUMINESCENCE
LUMINESCENCE
Science & Technology
Physical Sciences
Chemistry, Multidisciplinary
Chemistry
INITIO MOLECULAR-DYNAMICS
BAND-GAP
OPTICAL-PROPERTIES
PHASE-TRANSITION
CHARGE-TRANSFER
PEROVSKITES
CS3SB2I9
ENERGY
PHOTOLUMINESCENCE
LUMINESCENCE
03 Chemical Sciences
Publication Status: Published
Open Access location: https://doi.org/10.1039/D1SC03775G
Online Publication Date: 2021-10-05
Appears in Collections:Materials



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