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用于传感、光子和(光)电子应用的层状PtSe

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

作者信息

Wang Gaozhong, Wang Zhongzheng, McEvoy Niall, Fan Ping, Blau Werner J

机构信息

College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, China.

School of Physics and AMBER, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Adv Mater. 2021 Jan;33(1):e2004070. doi: 10.1002/adma.202004070. Epub 2020 Nov 23.

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.

摘要

自16年前首次通过实验发现石墨烯以来,又有许多其他二维层状纳米材料被报道。然而,大多数二维纳米结构的制造工艺相对复杂,这制约了它们的发展以及工业界对其实际应用的采用。本文综述了二维层状材料PtSe₂在传感、光子和(光)电子应用方面的最新进展,该材料因其高空气稳定性和与半导体技术兼容的制造方法,有望应用于工业领域。首先比较了一系列PtSe₂合成方法的优缺点,接着讨论了其突出性能以及工业和商业优势。随后综述了聚焦于PtSe₂宽带非线性光子特性的研究,以及其在超快激光器中用作可饱和吸收体的相关报道。此外,还总结了一系列基于PtSe₂的场效应晶体管、光电探测器和传感器所取得的进展。最后给出了这些结果的结论以及对未来的展望。

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