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Direct Band Gap Chalcohalide Semiconductors: Quaternary AgBiSCl2Nanocrystals

Authors :
Quarta, Danila
Toso, Stefano
Fieramosca, Antonio
Dominici, Lorenzo
Caliandro, Rocco
Moliterni, Anna
Tobaldi, David Maria
Saleh, Gabriele
Gushchina, Irina
Brescia, Rosaria
Prato, Mirko
Infante, Ivan
Cola, Adriano
Giannini, Cinzia
Manna, Liberato
Gigli, Giuseppe
Giansante, Carlo
Source :
Chemistry of Materials; December 2023, Vol. 35 Issue: 23 p9900-9906, 7p
Publication Year :
2023

Abstract

Heavy pnictogen chalcohalide semiconductors are coming under the spotlight for energy conversion applications. Here we present the colloidal synthesis of phase pure AgBiSCl2nanocrystals. This quaternary chalcohalide compound features a quasi-two-dimensional crystal structure and a direct band gap, in contrast with the monodimensional structure and the indirect band gap peculiar to the orthorhombic, ternary Bi chalcohalides. Consistently, colloidal AgBiSCl2nanocrystals exhibit photoinduced luminescence compatible with both band edge excitons and midgap states. This is the first observation of band edge emission in chalcohalide nanomaterials at large, although exciton recombination in our AgBiSCl2nanocrystals mostly occurs via nonradiative pathways. This work further advances our knowledge on this class of mixed anion semiconductor nanomaterials and provides a contribution to establishing chalcohalides as a reliable alternative to metal chalcogenides and halides.

Details

Language :
English
ISSN :
08974756
Volume :
35
Issue :
23
Database :
Supplemental Index
Journal :
Chemistry of Materials
Publication Type :
Periodical
Accession number :
ejs64597772
Full Text :
https://doi.org/10.1021/acs.chemmater.3c01403