AI Article Synopsis

  • * The study focused on the growth and morphology of 2D BiTe nanosheets, which were then annealed at 350 °C and tested in self-powered photoelectrochemical-type photodetectors.
  • * The photodetectors made from annealed BiTe showed significantly improved performance, with an 18.3 times increase in photocurrent under near-infrared light and demonstrated a broadband response across 365-850 nm, indicating their potential

Article Abstract

Bismuth telluride (BiTe), as an emerging two-dimensional (2D) material, has attracted extensive attention from scientific researchers due to its excellent optoelectronic, thermoelectric properties and topological structure. However, the application research of BiTemainly focuses on thermoelectric devices, while the research on optoelectronic devices is scarce. In this work, the morphology evolution and growth mechanism of 2D BiTenanosheets with a thickness of 12 ± 3 nm were systematically studied by solvothermal method. Then, the BiTenanosheets were annealed at 350 °C for 1 h and applied to self-powered photoelectrochemical-type broadband photodetectors. Compared with the as-synthesized BiTephotodetector, the photocurrent of the photodetector based on the annealed BiTeis significantly enhanced, especially enhanced by 18.3 times under near-infrared light illumination. Furthermore, the performance of annealed BiTephotodetector was systematically studied. The research results show that the photodetector not only has a broadband response from ultraviolet to near-infrared (365-850 nm) under zero bias voltage, but also obtains the highest responsivity of 6.6 mA Wunder green light with an incident power of 10 mW cm. The corresponding rise time and decay time are 17 ms and 20 ms, respectively. These findings indicate that annealed BiTenanosheets have great potential to be used as self-powered high-speed broadband photodetectors with high responsivity.

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Source
http://dx.doi.org/10.1088/1361-6528/ac1631DOI Listing

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