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Bromine-Substitution-Induced High-TcTwo-Dimensional Bilayered Perovskite Photoferroelectric

Authors :
Wu, Zhenyue
Zhang, Weichuan
Ye, Huang
Yao, Yunpeng
Liu, Xitao
Li, Lina
Ji, Chengmin
Luo, Junhua
Source :
Journal of the American Chemical Society; May 2021, Vol. 143 Issue: 20 p7593-7598, 6p
Publication Year :
2021

Abstract

High-Curie-temperature (Tc) ferroelectrics have exhibited broad applications in optoelectronic devices. Recently, two-dimensional multilayered perovskite ferroelectrics with excellent photoelectric attributes are attracting increasing interest as new systems of photoferroelectrics. However, the effective tuning of the Tcvalue of a multilayered perovskite photoferroelectric system still remains a huge challenge. Here, by a halogen substitution strategy to introduce bromine atoms on n-propylamine cations, the hybrid perovskite photoferroelectric (3-bromopropylaminium)2(formamidinium)Pb2Br7(BFPB) with a high Tcvalue (348.5 K) was obtained. It is notable that BFPBadopts a two-dimensional bilayered inorganic framework, with tight linking to the organic cation by C–Br···Br–Pb halogen···halogen interactions and N–H···Br hydrogen bonds. Intriguingly, in comparison with the prototypical compound (n-propylaminium)2(formamidinium)Pb2Br7, a remarkable augmentation of 85.2 K in the resulting Tcvalue of BFPBis clearly observed, which further broadens the temperature range of its application. In combination with the remarkable ferroelectric and semiconducting attributes, the reversible bulk photovoltaic effect was realized in single crystals of BFPB. This finding can not only enhance the hybrid perovskite ferroelectric family but also further promote the photoelectric application of ferroelectrics.

Details

Language :
English
ISSN :
00027863 and 15205126
Volume :
143
Issue :
20
Database :
Supplemental Index
Journal :
Journal of the American Chemical Society
Publication Type :
Periodical
Accession number :
ejs56331923
Full Text :
https://doi.org/10.1021/jacs.1c00459