Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3

Halide perovskites display physical properties that are of both practical and fundamental interest. At high pressure, the low-temperature electrical transport in one such compound, CsPbI3, is now shown to be due to Cs-mediated electron-electron interactions resulting in Fermi-liquid-like behaviour.

Bibliographic Details
Main Authors: Feng Ke, Jiejuan Yan, Shanyuan Niu, Jiajia Wen, Ketao Yin, Hong Yang, Nathan R. Wolf, Yan-Kai Tzeng, Hemamala I. Karunadasa, Young S. Lee, Wendy L. Mao, Yu Lin
Format: Article
Language:English
Published: Nature Portfolio 2022-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-34786-5
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author Feng Ke
Jiejuan Yan
Shanyuan Niu
Jiajia Wen
Ketao Yin
Hong Yang
Nathan R. Wolf
Yan-Kai Tzeng
Hemamala I. Karunadasa
Young S. Lee
Wendy L. Mao
Yu Lin
author_facet Feng Ke
Jiejuan Yan
Shanyuan Niu
Jiajia Wen
Ketao Yin
Hong Yang
Nathan R. Wolf
Yan-Kai Tzeng
Hemamala I. Karunadasa
Young S. Lee
Wendy L. Mao
Yu Lin
author_sort Feng Ke
collection DOAJ
description Halide perovskites display physical properties that are of both practical and fundamental interest. At high pressure, the low-temperature electrical transport in one such compound, CsPbI3, is now shown to be due to Cs-mediated electron-electron interactions resulting in Fermi-liquid-like behaviour.
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spelling doaj.art-3f133a9b546b4701b7180fd6d6dc3e112022-12-22T04:39:02ZengNature PortfolioNature Communications2041-17232022-11-011311810.1038/s41467-022-34786-5Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3Feng Ke0Jiejuan Yan1Shanyuan Niu2Jiajia Wen3Ketao Yin4Hong Yang5Nathan R. Wolf6Yan-Kai Tzeng7Hemamala I. Karunadasa8Young S. Lee9Wendy L. Mao10Yu Lin11Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratoryDepartment of Geological Sciences, Stanford UniversityStanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratoryStanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratorySchool of Physics and Electronic Engineering, Linyi UniversityDepartment of Geological Sciences, Stanford UniversityDepartment of Chemistry, Stanford UniversityDepartment of Physics, Stanford UniversityStanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratoryStanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratoryStanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratoryStanford Institute for Materials and Energy Sciences, SLAC National Accelerator LaboratoryHalide perovskites display physical properties that are of both practical and fundamental interest. At high pressure, the low-temperature electrical transport in one such compound, CsPbI3, is now shown to be due to Cs-mediated electron-electron interactions resulting in Fermi-liquid-like behaviour.https://doi.org/10.1038/s41467-022-34786-5
spellingShingle Feng Ke
Jiejuan Yan
Shanyuan Niu
Jiajia Wen
Ketao Yin
Hong Yang
Nathan R. Wolf
Yan-Kai Tzeng
Hemamala I. Karunadasa
Young S. Lee
Wendy L. Mao
Yu Lin
Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3
Nature Communications
title Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3
title_full Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3
title_fullStr Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3
title_full_unstemmed Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3
title_short Cesium-mediated electron redistribution and electron-electron interaction in high-pressure metallic CsPbI3
title_sort cesium mediated electron redistribution and electron electron interaction in high pressure metallic cspbi3
url https://doi.org/10.1038/s41467-022-34786-5
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