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Ferroelectric-tuned van der Waals heterojunction with band alignment evolution
by
Huang, Le
, Wang, Peng
, Meng, Xiangjian
, Jiang, Wei
, Wang, Zhen
, Shen, Hong
, Chu, Junhao
, Chen, Yan
, Wu, Binmin
, Lin, Tie
, Hu, Weida
, Wang, Jianlu
, Wang, Xudong
, Wei, Zhongming
, Wang, Xiaoting
in
142/126
/ 147/143
/ 147/3
/ 639/925/927/1007
/ 639/925/927/1021
/ Alignment
/ Dark current
/ Design
/ Dichroism
/ Electric fields
/ Ferroelectric materials
/ Ferroelectricity
/ Ferroelectrics
/ Fluorides
/ Graphene
/ Heterojunction devices
/ Humanities and Social Sciences
/ Laboratories
/ Molybdenum disulfide
/ multidisciplinary
/ Physics
/ Polarization
/ Polymers
/ Science
/ Science (multidisciplinary)
/ Semiconductors
/ Transistors
/ Two dimensional materials
/ Vinylidene
/ Vinylidene fluoride
2021
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Ferroelectric-tuned van der Waals heterojunction with band alignment evolution
by
Huang, Le
, Wang, Peng
, Meng, Xiangjian
, Jiang, Wei
, Wang, Zhen
, Shen, Hong
, Chu, Junhao
, Chen, Yan
, Wu, Binmin
, Lin, Tie
, Hu, Weida
, Wang, Jianlu
, Wang, Xudong
, Wei, Zhongming
, Wang, Xiaoting
in
142/126
/ 147/143
/ 147/3
/ 639/925/927/1007
/ 639/925/927/1021
/ Alignment
/ Dark current
/ Design
/ Dichroism
/ Electric fields
/ Ferroelectric materials
/ Ferroelectricity
/ Ferroelectrics
/ Fluorides
/ Graphene
/ Heterojunction devices
/ Humanities and Social Sciences
/ Laboratories
/ Molybdenum disulfide
/ multidisciplinary
/ Physics
/ Polarization
/ Polymers
/ Science
/ Science (multidisciplinary)
/ Semiconductors
/ Transistors
/ Two dimensional materials
/ Vinylidene
/ Vinylidene fluoride
2021
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Ferroelectric-tuned van der Waals heterojunction with band alignment evolution
by
Huang, Le
, Wang, Peng
, Meng, Xiangjian
, Jiang, Wei
, Wang, Zhen
, Shen, Hong
, Chu, Junhao
, Chen, Yan
, Wu, Binmin
, Lin, Tie
, Hu, Weida
, Wang, Jianlu
, Wang, Xudong
, Wei, Zhongming
, Wang, Xiaoting
in
142/126
/ 147/143
/ 147/3
/ 639/925/927/1007
/ 639/925/927/1021
/ Alignment
/ Dark current
/ Design
/ Dichroism
/ Electric fields
/ Ferroelectric materials
/ Ferroelectricity
/ Ferroelectrics
/ Fluorides
/ Graphene
/ Heterojunction devices
/ Humanities and Social Sciences
/ Laboratories
/ Molybdenum disulfide
/ multidisciplinary
/ Physics
/ Polarization
/ Polymers
/ Science
/ Science (multidisciplinary)
/ Semiconductors
/ Transistors
/ Two dimensional materials
/ Vinylidene
/ Vinylidene fluoride
2021
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Ferroelectric-tuned van der Waals heterojunction with band alignment evolution
Journal Article
Ferroelectric-tuned van der Waals heterojunction with band alignment evolution
2021
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Overview
Van der Waals integration with abundant two-dimensional materials provides a broad basis for assembling functional devices. In a specific van der Waals heterojunction, the band alignment engineering is crucial and feasible to realize high performance and multifunctionality. Here, we design a ferroelectric-tuned van der Waals heterojunction device structure by integrating a GeSe/MoS
2
VHJ and poly (vinylidene fluoride-trifluoroethylene)-based ferroelectric polymer. An ultrahigh electric field derived from the ferroelectric polarization can effectively modulate the band alignment of the GeSe/MoS
2
heterojunction. Band alignment transition of the heterojunction from type II to type I is demonstrated. The combination of anisotropic GeSe with MoS
2
realizes a high-performance polarization-sensitive photodetector exhibiting low dark current of approximately 1.5 pA, quick response of 14 μs, and high detectivity of 4.7 × 10
12
Jones. Dichroism ratios are also enhanced by ferroelectric polarization in a broad spectrum from visible to near-infrared. The ferroelectric-tuned GeSe/MoS
2
van der Waals heterojunction has great potential for multifunctional detection applications in sophisticated light information sensing. More profoundly, the ferroelectric-tuned van der Waals heterojunction structure provides a valid band-engineering approach to creating versatile devices.
Band alignment engineering is important to realize high performance and multifunctionality in a specific van der Waals heterojunction. Here, the authors observe band alignment transition of the heterojunction in a ferroelectric-tuned van der Waals heterojunction device with high performance.
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