Broken-Gap PtS<sub>2</sub>/WSe<sub>2</sub> van der Waals Heterojunction with Ultrahigh Reverse Rectification and Fast Photoresponse.
basic_science · Level V
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- Record sourced from PubMed, PMID 33645213.
- Also identified by DOI 10.1021/acsnano.0c09593.
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Abstract
Broken-gap van der Waals (vdW) heterojunctions based on 2D materials are promising structures to fabricate high-speed switching and low-power multifunctional devices thanks to its charge transport <i>versus</i> quantum tunneling mechanism. However, the tunneling current is usually generated under both positive and negative bias voltage, resulting in small rectification and photocurrent on/off ratio. In this paper, we report a broken-gap vdW heterojunction PtS<sub>2</sub>/WSe<sub>2</sub> with a bilateral accumulation region design and a big band offset by utilizing thick PtS<sub>2</sub> as an effective carrier-selective contact, which exhibits an ultrahigh reverser rectification ratio approaching 10<sup>8</sup> and on/off ratio over 10<sup>8</sup> at room temperature. We also find excellent photodetection properties in such a heterodiode with a large photocurrent on/off ratio over 10<sup>5</sup> due to its ultralow forward current and a comparable photodetectivity of 3.8 × 10<sup>10</sup> Jones. In addition, the response time of such a photodetector reaches 8 μs owing to the photoinduced tunneling mechanism and reduced interface trapping effect. The proposed heterojunction not only demonstrates the high-performance broken-gap heterodiode but also provides in-depth understanding of the tunneling mechanism in the development of future electronic and optoelectronic applications.