Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect

2D transition metal ditellurides exhibit nontrivial topological phases, but the controlled bottom-up synthesis of these materials is still challenging. Here, the authors report the layer-by-layer growth of large-area bilayer and trilayer 1T’ MoTe2 films, showing thickness-dependent ferroelectricity...

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Main Authors: Teng Ma, Hao Chen, Kunihiro Yananose, Xin Zhou, Lin Wang, Runlai Li, Ziyu Zhu, Zhenyue Wu, Qing-Hua Xu, Jaejun Yu, Cheng Wei Qiu, Alessandro Stroppa, Kian Ping Loh
Format: Article
Language:English
Published: Nature Portfolio 2022-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-33201-3
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author Teng Ma
Hao Chen
Kunihiro Yananose
Xin Zhou
Lin Wang
Runlai Li
Ziyu Zhu
Zhenyue Wu
Qing-Hua Xu
Jaejun Yu
Cheng Wei Qiu
Alessandro Stroppa
Kian Ping Loh
author_facet Teng Ma
Hao Chen
Kunihiro Yananose
Xin Zhou
Lin Wang
Runlai Li
Ziyu Zhu
Zhenyue Wu
Qing-Hua Xu
Jaejun Yu
Cheng Wei Qiu
Alessandro Stroppa
Kian Ping Loh
author_sort Teng Ma
collection DOAJ
description 2D transition metal ditellurides exhibit nontrivial topological phases, but the controlled bottom-up synthesis of these materials is still challenging. Here, the authors report the layer-by-layer growth of large-area bilayer and trilayer 1T’ MoTe2 films, showing thickness-dependent ferroelectricity and nonlinear Hall effect.
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spelling doaj.art-cb2a19c31d6746379594316a331da03e2022-12-22T04:03:03ZengNature PortfolioNature Communications2041-17232022-09-0113111010.1038/s41467-022-33201-3Growth of bilayer MoTe2 single crystals with strong non-linear Hall effectTeng Ma0Hao Chen1Kunihiro Yananose2Xin Zhou3Lin Wang4Runlai Li5Ziyu Zhu6Zhenyue Wu7Qing-Hua Xu8Jaejun Yu9Cheng Wei Qiu10Alessandro Stroppa11Kian Ping Loh12Department of Chemistry, National University of SingaporeDepartment of Chemistry, National University of SingaporeCenter for Theoretical Physics, Department of Physics and Astronomy, Seoul National UniversityDepartment of Chemistry, National University of SingaporeDepartment of Chemistry, National University of SingaporeDepartment of Chemistry, National University of SingaporeDepartment of Chemistry, National University of SingaporeDepartment of Chemistry, National University of SingaporeDepartment of Chemistry, National University of SingaporeCenter for Theoretical Physics, Department of Physics and Astronomy, Seoul National UniversityDepartment of Electrical and Computer Engineering, National University of SingaporeConsiglio Nazionale delle Ricerche, Institute for Superconducting and Innovative Materials and Devices (CNR-SPIN), c/o Department of Physical and Chemical Sciences, University of L’AquilaDepartment of Chemistry, National University of Singapore2D transition metal ditellurides exhibit nontrivial topological phases, but the controlled bottom-up synthesis of these materials is still challenging. Here, the authors report the layer-by-layer growth of large-area bilayer and trilayer 1T’ MoTe2 films, showing thickness-dependent ferroelectricity and nonlinear Hall effect.https://doi.org/10.1038/s41467-022-33201-3
spellingShingle Teng Ma
Hao Chen
Kunihiro Yananose
Xin Zhou
Lin Wang
Runlai Li
Ziyu Zhu
Zhenyue Wu
Qing-Hua Xu
Jaejun Yu
Cheng Wei Qiu
Alessandro Stroppa
Kian Ping Loh
Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect
Nature Communications
title Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect
title_full Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect
title_fullStr Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect
title_full_unstemmed Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect
title_short Growth of bilayer MoTe2 single crystals with strong non-linear Hall effect
title_sort growth of bilayer mote2 single crystals with strong non linear hall effect
url https://doi.org/10.1038/s41467-022-33201-3
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