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Temperature-driven reversible structural transformation and conductivity switching in ultrathin Cu9S5 crystals
by
Li, Li
, Wu, Jinxiong
, Yuan, Hongtao
, Gao, Zhansheng
, Zhang, Lei
, Li, Zeya
, Deng, Ying
, Chen, Jiabiao
, Luo, Feng
, Huang, Junwei
, Fu, Xuewen
, Zhou, Zhengyang
, Xu, Weigao
in
Atomic/Molecular Structure and Spectra
/ Biomedicine
/ Biotechnology
/ Carrier density
/ Chemical vapor deposition
/ Chemistry and Materials Science
/ Communication
/ Condensed Matter Physics
/ Conductivity
/ Crystal growth
/ Crystals
/ Electrical properties
/ Electron diffraction
/ Information storage
/ Low temperature
/ Materials Science
/ Nanotechnology
/ Nondestructive testing
/ Phase transitions
/ Physical properties
/ Room temperature
/ Superstructures
/ Switching
/ Two dimensional materials
2023
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Temperature-driven reversible structural transformation and conductivity switching in ultrathin Cu9S5 crystals
by
Li, Li
, Wu, Jinxiong
, Yuan, Hongtao
, Gao, Zhansheng
, Zhang, Lei
, Li, Zeya
, Deng, Ying
, Chen, Jiabiao
, Luo, Feng
, Huang, Junwei
, Fu, Xuewen
, Zhou, Zhengyang
, Xu, Weigao
in
Atomic/Molecular Structure and Spectra
/ Biomedicine
/ Biotechnology
/ Carrier density
/ Chemical vapor deposition
/ Chemistry and Materials Science
/ Communication
/ Condensed Matter Physics
/ Conductivity
/ Crystal growth
/ Crystals
/ Electrical properties
/ Electron diffraction
/ Information storage
/ Low temperature
/ Materials Science
/ Nanotechnology
/ Nondestructive testing
/ Phase transitions
/ Physical properties
/ Room temperature
/ Superstructures
/ Switching
/ Two dimensional materials
2023
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Temperature-driven reversible structural transformation and conductivity switching in ultrathin Cu9S5 crystals
by
Li, Li
, Wu, Jinxiong
, Yuan, Hongtao
, Gao, Zhansheng
, Zhang, Lei
, Li, Zeya
, Deng, Ying
, Chen, Jiabiao
, Luo, Feng
, Huang, Junwei
, Fu, Xuewen
, Zhou, Zhengyang
, Xu, Weigao
in
Atomic/Molecular Structure and Spectra
/ Biomedicine
/ Biotechnology
/ Carrier density
/ Chemical vapor deposition
/ Chemistry and Materials Science
/ Communication
/ Condensed Matter Physics
/ Conductivity
/ Crystal growth
/ Crystals
/ Electrical properties
/ Electron diffraction
/ Information storage
/ Low temperature
/ Materials Science
/ Nanotechnology
/ Nondestructive testing
/ Phase transitions
/ Physical properties
/ Room temperature
/ Superstructures
/ Switching
/ Two dimensional materials
2023
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Temperature-driven reversible structural transformation and conductivity switching in ultrathin Cu9S5 crystals
Journal Article
Temperature-driven reversible structural transformation and conductivity switching in ultrathin Cu9S5 crystals
2023
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Overview
Two-dimensional (2D) materials with reversible phase transformation are appealing for their rich physics and potential applications in information storage. However, up to now, reversible phase transitions in 2D materials that can be driven by facile nondestructive methods, such as temperature, are still rare. Here, we introduce ultrathin Cu
9
S
5
crystals grown by chemical vapor deposition (CVD) as an exemplary case. For the first time, their basic electrical properties were investigated based on Hall measurements, showing a record high hole carrier density of ∼ 10
22
cm
−3
among 2D semiconductors. Besides, an unusual and repeatable conductivity switching behavior at ∼ 250 K were readily observed in a wide thickness range of CVD-grown Cu
9
S
5
(down to 2 unit-cells). Confirmed by
in-situ
selected area electron diffraction, this unusual behavior can be ascribed to the reversible structural phase transition between the room-temperature hexagonal β phase and low-temperature β′ phase with a superstructure. Our work provides new insights to understand the physical properties of ultrathin Cu
9
S
5
crystals, and brings new blood to the 2D materials family with reversible phase transitions.
Publisher
Tsinghua University Press
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