Broadband Van‐der‐Waals Photodetector Driven by Ferroelectric Polarization

Author:

Kim Sungjun123,Lee Sunghun3,Oh Seyong4,Lee Kyeong‐Bae3,Lee Je‐Jun3,Kim Byeongchan3,Heo Keun5,Park Jin‐Hong36ORCID

Affiliation:

1. Foundry Division Samsung Electronics Co. Ltd. Yongin 17113 South Korea

2. Samsung Institute of Technology Yongin 17113 South Korea

3. Department of Electrical and Computer Engineering Sungkyunkwan University (SKKU) Suwon 16419 South Korea

4. Division of Electrical Engineering Hanyang University ERICA Ansan 15588 South Korea

5. School of Semiconductor and Chemical Engineering Semiconductor Physics Research Center Jeonbuk National University Jeonju Jeollabuk‐do 54896 South Korea

6. SKKU Advanced Institute of Nano‐Technology (SAINT) Sungkyunkwan University (SKKU) Suwon 16419 South Korea

Abstract

AbstractThe potential for various future industrial applications has made broadband photodetectors beyond visible light an area of great interest. Although most 2D van‐der‐Waals (vdW) semiconductors have a relatively large energy bandgap (>1.2 eV), which limits their use in short‐wave infrared detection, they have recently been considered as a replacement for ternary alloys in high‐performance photodetectors due to their strong light‐matter interaction. In this study, a ferroelectric gating ReS2/WSe2 vdW heterojunction‐channel photodetector is presented that successfully achieves broadband light detection (>1300 nm, expandable up to 2700 nm). The staggered type‐II bandgap alignment creates an interlayer gap of 0.46 eV between the valence band maximum (VBMAX) of WSe2 and the conduction band minimum (CBMIN) of ReS2. Especially, the control of poly(vinylidene fluoride‐trifluoroethylene) (P(VDF‐TrFE)) ferroelectric dipole polarity for a specific wavelength allows a high photoresponsivity of up to 6.9 × 103 A W−1 and a low dark current below 0.26 nA under the laser illumination with a wavelength of 405 nm in P‐up mode. The achieved high photoresponsivity, low dark current, and full‐range near infrared (NIR) detection capability open the door for next‐generation photodetectors beyond traditional ternary alloy photodetectors.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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