Cardiff University | Prifysgol Caerdydd ORCA
Online Research @ Cardiff 
WelshClear Cookie - decide language by browser settings

Using pressure to unravel the structure–dynamic-disorder relationship in metal halide perovskites

Xu, Kai, Pérez-Fidalgo, Luis, Charles, Bethan L., Weller, Mark T., Alonso, M. Isabel and Goñi, Alejandro R. 2023. Using pressure to unravel the structure–dynamic-disorder relationship in metal halide perovskites. Scientific Reports 13 (1) , 9300. 10.1038/s41598-023-36501-w

[thumbnail of 41598_2023_36501_MOESM1_ESM.pdf] PDF - Supplemental Material
Available under License Creative Commons Attribution.

Download (799kB)
[thumbnail of 41598_2023_Article_36501.pdf] PDF - Published Version
Available under License Creative Commons Attribution.

Download (1MB)

Abstract

The exceptional optoelectronic properties of metal halide perovskites (MHPs) are presumed to arise, at least in part, from the peculiar interplay between the inorganic metal-halide sublattice and the atomic or molecular cations enclosed in the cage voids. The latter can exhibit a roto-translative dynamics, which is shown here to be at the origin of the structural behavior of MHPs as a function of temperature, pressure and composition. The application of high hydrostatic pressure allows for unraveling the nature of the interaction between both sublattices, characterized by the simultaneous action of hydrogen bonding and steric hindrance. In particular, we find that under the conditions of unleashed cation dynamics, the key factor that determines the structural stability of MHPs is the repulsive steric interaction rather than hydrogen bonding. Taking as example the results from pressure and temperature-dependent photoluminescence and Raman experiments on MAPbBr3 but also considering the pertinent MHP literature, we provide a general picture about the relationship between the crystal structure and the presence or absence of cationic dynamic disorder. The reason for the structural sequences observed in MHPs with increasing temperature, pressure, A-site cation size or decreasing halide ionic radius is found principally in the strengthening of the dynamic steric interaction with the increase of the dynamic disorder. In this way, we have deepened our fundamental understanding of MHPs; knowledge that could be coined to improve performance in future optoelectronic devices based on this promising class of semiconductors.

Item Type: Article
Date Type: Published Online
Status: Published
Schools: Chemistry
Additional Information: License information from Publisher: LICENSE 1: URL: http://creativecommons.org/licenses/by/4.0/, Type: open-access
Publisher: Nature Research
Date of First Compliant Deposit: 9 June 2023
Date of Acceptance: 5 June 2023
Last Modified: 06 Sep 2023 14:48
URI: https://orca.cardiff.ac.uk/id/eprint/160276

Actions (repository staff only)

Edit Item Edit Item

Downloads

Downloads per month over past year

View more statistics