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Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure

Nitride perovskite LaWN(3) has been predicted to be a promising ferroelectric material with unique properties for diverse applications. However, due to the challenging sample preparation at ambient pressure, the crystal structure of this nitride remains unsolved, which results in many ambiguities in...

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Autores principales: Zhou, Xuefeng, Xu, Wenwen, Gui, Zhigang, Gu, Chao, Chen, Jian, Xie, Jianyu, Yao, Xiaodong, Dai, Junfeng, Zhu, Jinlong, Wu, Liusuo, Guo, Er‐jia, Yu, Xiaohui, Fang, Leiming, Zhao, Yusheng, Huang, Li, Wang, Shanmin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10323622/
https://www.ncbi.nlm.nih.gov/pubmed/37129311
http://dx.doi.org/10.1002/advs.202205479
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author Zhou, Xuefeng
Xu, Wenwen
Gui, Zhigang
Gu, Chao
Chen, Jian
Xie, Jianyu
Yao, Xiaodong
Dai, Junfeng
Zhu, Jinlong
Wu, Liusuo
Guo, Er‐jia
Yu, Xiaohui
Fang, Leiming
Zhao, Yusheng
Huang, Li
Wang, Shanmin
author_facet Zhou, Xuefeng
Xu, Wenwen
Gui, Zhigang
Gu, Chao
Chen, Jian
Xie, Jianyu
Yao, Xiaodong
Dai, Junfeng
Zhu, Jinlong
Wu, Liusuo
Guo, Er‐jia
Yu, Xiaohui
Fang, Leiming
Zhao, Yusheng
Huang, Li
Wang, Shanmin
author_sort Zhou, Xuefeng
collection PubMed
description Nitride perovskite LaWN(3) has been predicted to be a promising ferroelectric material with unique properties for diverse applications. However, due to the challenging sample preparation at ambient pressure, the crystal structure of this nitride remains unsolved, which results in many ambiguities in its properties. Here, the authors report a comprehensive study of LaWN(3) based on high‐quality samples synthesized by a high‐pressure method, leading to a definitive resolution of its crystal structure involving nitrogen deficiency. Combined with theoretical calculations, these results show that LaWN(3) adopts an orthorhombic Pna2 (1) structure with a polar symmetry, possessing a unique atomic polarization along the c‐axis. The associated atomic polar distortions in LaWN(3) are driven by covalent hybridization of W: 5d and N: 2p orbitals, opening a direct bandgap that explains its semiconducting behaviors. The structural stability and electronic properties of this nitride are also revealed to be closely associated with its nitrogen deficiency. The success in unraveling the structural and electronic ambiguities of LaWN(3) would provide important insights into the structures and properties of the family of nitride perovskites.
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spelling pubmed-103236222023-07-07 Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure Zhou, Xuefeng Xu, Wenwen Gui, Zhigang Gu, Chao Chen, Jian Xie, Jianyu Yao, Xiaodong Dai, Junfeng Zhu, Jinlong Wu, Liusuo Guo, Er‐jia Yu, Xiaohui Fang, Leiming Zhao, Yusheng Huang, Li Wang, Shanmin Adv Sci (Weinh) Research Articles Nitride perovskite LaWN(3) has been predicted to be a promising ferroelectric material with unique properties for diverse applications. However, due to the challenging sample preparation at ambient pressure, the crystal structure of this nitride remains unsolved, which results in many ambiguities in its properties. Here, the authors report a comprehensive study of LaWN(3) based on high‐quality samples synthesized by a high‐pressure method, leading to a definitive resolution of its crystal structure involving nitrogen deficiency. Combined with theoretical calculations, these results show that LaWN(3) adopts an orthorhombic Pna2 (1) structure with a polar symmetry, possessing a unique atomic polarization along the c‐axis. The associated atomic polar distortions in LaWN(3) are driven by covalent hybridization of W: 5d and N: 2p orbitals, opening a direct bandgap that explains its semiconducting behaviors. The structural stability and electronic properties of this nitride are also revealed to be closely associated with its nitrogen deficiency. The success in unraveling the structural and electronic ambiguities of LaWN(3) would provide important insights into the structures and properties of the family of nitride perovskites. John Wiley and Sons Inc. 2023-05-02 /pmc/articles/PMC10323622/ /pubmed/37129311 http://dx.doi.org/10.1002/advs.202205479 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Zhou, Xuefeng
Xu, Wenwen
Gui, Zhigang
Gu, Chao
Chen, Jian
Xie, Jianyu
Yao, Xiaodong
Dai, Junfeng
Zhu, Jinlong
Wu, Liusuo
Guo, Er‐jia
Yu, Xiaohui
Fang, Leiming
Zhao, Yusheng
Huang, Li
Wang, Shanmin
Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure
title Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure
title_full Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure
title_fullStr Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure
title_full_unstemmed Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure
title_short Polar Nitride Perovskite LaWN(3‐δ ) with Orthorhombic Structure
title_sort polar nitride perovskite lawn(3‐δ ) with orthorhombic structure
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10323622/
https://www.ncbi.nlm.nih.gov/pubmed/37129311
http://dx.doi.org/10.1002/advs.202205479
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