Use this link to cite:
http://hdl.handle.net/2183/40672 Pressure-Induced Reversible Framework Rearrangement and Increased Polarization in the Polar [NH₄[Cd(HCOO)₃] Hybrid Perovskite
Loading...
Identifiers
Publication date
Authors
Andrada-Chacón, A.
Sánchez-Benítez, Javier
Ren, Wei
Hu, Shunbo
Gu, Teng
Xiang, Hongjun
Biczysko, Malgorzata
Advisors
Other responsabilities
Journal Title
Bibliographic citation
J. M. Bermúdez-García, A. García-Fernández, A. Andrada-Chacón, J. Sánchez-Benítez, W. Ren, S. Hu, T. Gu, H. Xiang, M. Biczysko, S. Castro-García, M. Sánchez-Andújar, A. Stroppa and M. A. Señarís-Rodríguez, Inorg. Chem. Front., 2019, 6, 2379 DOI: 10.1039/C9QI00749K
Type of academic work
Academic degree
Abstract
[Abstract] In this work, we study the structural changes of the polar [NH₄[Cd(HCOO)₃] hybrid perovskite under external hydrostatic pressure. We report a reversible framework rearrangement as a function of pressure characterized by: (i) a gradual modification of one formate ligand, which changes its coordination mode from a bridging syn–anti mode at atmospheric pressure (LP-phase) to a chelating-anti mode at high-pressure (HP-phase) and (ii) a change in the coordination of the Cd²⁺ cations from six-coordinated (LP-phase) to hepta-coordinated (HP-phase). Very interestingly, this unprecedented framework arrangement displays a large electrical polarization. For instance, the polarization value observed at p = 17.7 GPa is about four times the polarization at atmospheric pressure. Therefore, we report that the external pressure induces a novel framework rearrangement in the polar [NH₄[Cd(HCOO)₃] hybrid perovskite with enhanced electrical polarization. This structure–property relationship offers new insights for designing novel ferroelectric materials based on pressure-responsive hybrid perovskite materials.
Description
This is an accepted version of the published document. This version of the article has been accepted for publication, after peer review, but is not the Version of Record and does not reflect post-acceptance improvements, or any corrections. The Version of Record is available online at: https://doi.org/10.1039/C9QI00749K.
Electronic supplementary information (ESI) available: Detail of PXRD patterns and Le Bail refinement of [NH4][Cd(HCOO)3] upon compression at room temperature. Diagram showing the main changes on the crystal structure caused by applied external pressure. See DOI: 10.1039/c9qi00749k
Electronic supplementary information (ESI) available: Detail of PXRD patterns and Le Bail refinement of [NH4][Cd(HCOO)3] upon compression at room temperature. Diagram showing the main changes on the crystal structure caused by applied external pressure. See DOI: 10.1039/c9qi00749k







