Ultrasensitive all-2D MoS<sub>2</sub> phototransistors enabled by an out-of-plane MoS<sub>2</sub> PN homojunction.

Huo, Nengjie; Konstantatos, Gerasimos · Nat Commun · 2017

basic_science · Level V

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Abstract

Two-dimensional transition metal dichalcogenide-based photodetectors have demonstrated potential for the next generation of 2-dimensional optoelectronics. However, to date, their sensitivity has not been superior to that of other technologies. Here we report an ultrasensitive two-dimensional photodetector employing an in-plane phototransistor with an out-of-plane vertical MoS<sub>2</sub> p-n junction as a sensitizing scheme. The vertical built-in field is introduced for the first time in the transport channel of MoS<sub>2</sub> phototransistors by facile chemical surface doping, which separates the photo-excited carriers efficiently and produces a photoconductive gain of >10<sup>5</sup> electrons per photon, external quantum efficiency greater than 10%, responsivity of 7 × 10<sup>4</sup> A W<sup>-1</sup>, and a time response on the order of tens of ms. This taken together with a very low noise power density yields a record sensitivity with specific detectivity [Formula: see text] of 3.5 × 10<sup>14</sup> Jones in the visible and a broadband response up to 1000 nm.Photodetectors based on 2D transition metal dichalcogenides exhibit ever increasingly competitive performance, yet not superior to that of alternative technologies. Here, the authors devise a MoS<sub>2</sub>-based phototransistor with an out-of-plane junction, yielding a record detectivity combined with broadband response.