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Highly sensitive active pixel image sensor array driven by large-area bilayer MoS2 transistor circuitry

Authors
Hong, SeonginZagni, NicoloChoo, SoohoLiu, NaBaek, SeunghoBala, ArindamYoo, HocheonKang, Byung HaKim, Hyun JaeYun, Hyung JoongAlam, Muhammad AshrafulKim, Sunkook
Issue Date
Jun-2021
Publisher
Nature Research
Citation
Nature Communications, v.12, no.1
Journal Title
Nature Communications
Volume
12
Number
1
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/81697
DOI
10.1038/s41467-021-23711-x
ISSN
2041-1723
Abstract
Various large-area growth methods for two-dimensional transition metal dichalcogenides have been developed recently for future electronic and photonic applications. However, they have not yet been employed for synthesizing active pixel image sensors. Here, we report on an active pixel image sensor array with a bilayer MoS2 film prepared via a two-step large-area growth method. The active pixel of image sensor is composed of 2D MoS2 switching transistors and 2D MoS2 phototransistors. The maximum photoresponsivity (Rph) of the bilayer MoS2 phototransistors in an 8 × 8 active pixel image sensor array is statistically measured as high as 119.16 A W−1. With the aid of computational modeling, we find that the main mechanism for the high Rph of the bilayer MoS2 phototransistor is a photo-gating effect by the holes trapped at subgap states. The image-sensing characteristics of the bilayer MoS2 active pixel image sensor array are successfully investigated using light stencil projection. © 2021, The Author(s).
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