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Layered PtSe for Sensing, Photonic, and (Opto-)Electronic Applications. | LitMetric

AI Article Synopsis

  • The discovery of graphene 16 years ago has led to the emergence of many 2D layered nanomaterials, but complex fabrication processes have hindered their industrial application.
  • This text reviews the recent advancements of PtSe, a promising 2D material, emphasizing its high air-stability and compatibility with semiconductor fabrication methods.
  • The review covers synthesis methods, PtSe's exceptional properties, its applications in photonics and electronics, and concludes with an outlook on its future potential in various technologies.

Article Abstract

Since the first experimental discovery of graphene 16 years ago, many other 2D layered nanomaterials have been reported. However, the majority of 2D nanostructures suffer from relatively complicated fabrication processes that have bottlenecked their development and their uptake by industry for practical applications. Here, the recent progress in sensing, photonic, and (opto-)electronic applications of PtSe , a 2D layered material that is likely to be used in industries benefiting from its high air-stability and semiconductor-technology-compatible fabrication methods, is reviewed. The advantages and disadvantages of a range of synthesis methods for PtSe are initially compared, followed by a discussion of its outstanding properties, and industrial and commercial advantages. Research focused on the broadband nonlinear photonic properties of PtSe , as well as reports of its use as a saturable absorber in ultrafast lasers, are then reviewed. Additionally, the advances that have been achieved in a range of PtSe -based field-effect transistors, photodetectors, and sensors are summarized. Finally, a conclusion on these results along with the outlook for the future is presented.

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Source
http://dx.doi.org/10.1002/adma.202004070DOI Listing

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