Interface engineering of ferroelectric-gated MoS2 phototransistor

被引:0
作者
Shuaiqin Wu
Xudong Wang
Wei Jiang
Luqi Tu
Yan Chen
Jingjing Liu
Tie Lin
Hong Shen
Jun Ge
Weida Hu
Xiangjian Meng
Jianlu Wang
Junhao Chu
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Infrared Physics, Shanghai Institute of Technical Physics
[2] University of Chinese Academy of Sciences,Hangzhou Institute for Advanced Study
[3] University of Chinese Academy of Sciences,undefined
来源
Science China Information Sciences | 2021年 / 64卷
关键词
2D materials; ferroelectrics; MoS; phototransistors; h-BN; interface engineering;
D O I
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中图分类号
学科分类号
摘要
Two-dimensional (2D) layered materials have received significant attention owing to their unique crystal structures as well as outstanding optical and electric properties in photoelectric detection. However, most 2D materials are very sensitive to the environment. Adsorbates and traps introduced during the preparation process have a negative effect on the performance of devices based on these materials. Here, we focus on a molybdenum disulfide (MoS2) phototransistor gated by ferroelectrics, and insert a hexagonal boron nitride (h-BN) layer between MoS2 and the ferroelectric film to improve the interface. To clarify the role of h-BN in this device, two parallel devices are prepared on the same MoS2 flake. One device is covered with h-BN, while the other is in direct contact with the ferroelectric film. The electronic and optoelectronic properties of these two devices are then measured and compared. Experimental results reveal that, compared to device without h-BN, the MoS2 phototransistor with h-BN exhibits higher carrier mobility (average value: 85 cm2·V−1·s−1 and highest value: 185 cm2·V−1·s−1), larger responsivity (85 A·W−1), and larger detectivity (1.76 × 1013 Jones). Thus, this strategy is significant for the interface engineering and performance improvement of devices based on 2D materials.
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