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  4. Indirect tail states formation by thermal-induced polar fluctuations in halide perovskites
 
research article

Indirect tail states formation by thermal-induced polar fluctuations in halide perovskites

Wu, Bo
•
Yuan, Haifeng
•
Xu, Qiang
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January 29, 2019
Nature Communications

Halide perovskites possess enormous potential for various optoelectronic applications. Presently, a clear understanding of the interplay between the lattice and electronic effects is still elusive. Specifically, the weakly absorbing tail states and dual emission from perovskites are not satisfactorily described by existing theories based on the Urbach tail and reabsorption effect. Herein, through temperature-dependent and time-resolved spectroscopy on metal halide perovskite single crystals with organic or inorganic A-site cations, we confirm the existence of indirect tail states below the direct transition edge to arise from a dynamical Rashba splitting effect, caused by the PbBr6 octahedral thermal polar distortions at elevated temperatures. This dynamic effect is distinct from the static Rashba splitting effect, caused by non-spherical A-site cations or surface induced lattice distortions. Our findings shed fresh perspectives on the electronic-lattice relations paramount for the design and optimization of emergent perovskites, revealing broad implications for light harvesting/photo-detection and light emission/lasing applications.

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Type
research article
DOI
10.1038/s41467-019-08326-7
Web of Science ID

WOS:000456960200010

Author(s)
Wu, Bo
Yuan, Haifeng
Xu, Qiang
Steele, Julian A.
Giovanni, David
Puech, Pascal
Fu, Jianhui
Ng, Yan Fong
Jamaludin, Nur Fadilah
Solanki, Ankur
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Date Issued

2019-01-29

Publisher

Springer

Published in
Nature Communications
Volume

10

Start page

484

Subjects

Multidisciplinary Sciences

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Science & Technology - Other Topics

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band-gap

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radiative recombination

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charge separation

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lead

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rashba

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methylammonium

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carrier

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transition

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trihalide

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emission

Note

This article is licensed under a Creative Commons Attribution 4.0 International License

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPI  
Available on Infoscience
June 18, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/157959
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