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A gate-tunable symmetric bipolar junction transistor fabricated via femtosecond laser processing.


ABSTRACT: Two-dimensional (2D) bipolar junction transistors (BJTs) with van der Waals heterostructures play an important role in the development of future nanoelectronics. Herein, a convenient method is introduced for fabricating a symmetric bipolar junction transistor (SBJT), constructed from black phosphorus and MoS2, with femtosecond laser processing. This SBJT exhibits good bidirectional current amplification owing to its symmetric structure. We placed a top gate on one side of the SBJT to change the difference in the major carrier concentration between the emitter and collector in order to further investigate the effects of electrostatic doping on the device performance. The SBJT can also act as a gate-tunable phototransistor with good photodetectivity and photocurrent gain of β = ∼21. Scanning photocurrent images were used to determine the mechanism governing photocurrent amplification in the phototransistor. These results promote the development of the applications of multifunctional nanoelectronics based on 2D materials.

SUBMITTER: Su BW 

PROVIDER: S-EPMC9417257 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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A gate-tunable symmetric bipolar junction transistor fabricated <i>via</i> femtosecond laser processing.

Su Bao-Wang BW   Yao Bin-Wei BW   Zhang Xi-Lin XL   Huang Kai-Xuan KX   Li De-Kang DK   Guo Hao-Wei HW   Li Xiao-Kuan XK   Chen Xu-Dong XD   Liu Zhi-Bo ZB   Tian Jian-Guo JG  

Nanoscale advances 20200318 4


Two-dimensional (2D) bipolar junction transistors (BJTs) with van der Waals heterostructures play an important role in the development of future nanoelectronics. Herein, a convenient method is introduced for fabricating a symmetric bipolar junction transistor (SBJT), constructed from black phosphorus and MoS<sub>2</sub>, with femtosecond laser processing. This SBJT exhibits good bidirectional current amplification owing to its symmetric structure. We placed a top gate on one side of the SBJT to  ...[more]

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