Self-powered broadband photodetector based on MoS2/Sb2Te3 heterojunctions: a promising approach for highly sensitive detection

Author:

Wang Hao12ORCID,Gui Yaliang1ORCID,Dong Chaobo1,Altaleb Salem1,Nouri Behrouz Movahhed1,Thomaschewski Martin1,Dalir Hamed2ORCID,Sorger Volker J.1ORCID

Affiliation:

1. Department of Electrical & Computer Engineering, The George Washington University , 800 22nd Street NW 5000 Science & Engineering Hall , Washington , DC 20052 , USA

2. Optelligence LLC, 10703 Marlboro Pike , Upper Marlboro , MD 20772 , USA

Abstract

Abstract Topological insulators have shown great potential for future optoelectronic technology due to their extraordinary optical and electrical properties. Photodetectors, as one of the most widely used optoelectronic devices, are crucial for sensing, imaging, communication, and optical computing systems to convert optical signals to electrical signals. Here we experimentally show a novel combination of topological insulators (TIs) and transition metal chalcogenides (TMDs) based self-powered photodetectors with ultra-low dark current and high sensitivity. The photodetector formed by a MoS2/Sb2Te3 heterogeneous junction exhibits a low dark current of 2.4 pA at zero bias and 1.2 nA at 1V. It shows a high photoresponsivity of >150 mA W−1 at zero bias and rectification of 3 times at an externally applied bias voltage of 1V. The excellent performance of the proposed photodetector with its innovative material combination of TMDs and TIs paves the way for the development of novel high-performance optoelectronic devices. The TIs/TMDs transfer used to form the heterojunction is simple to incorporate into on-chip waveguide systems, enabling future applications on highly integrated photonic circuits.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

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