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Currently, numerous monoelemental two-dimensional (2D) materials, called Xenes, have been discovered, including graphyne (GD), silicene, germanene, arsenene, and borophene. Their structures, fabrication methods, as well as properties have been extensively explored. Based on their single-element composition, high optical response capability, excellent electrical-optical properties, large specific surface area (SSA) and easy modification, Xenes have been widely used in photoelectric applications (detection, modulation, light processing) and biomedicine (biological sensing, drug loading, bioimaging, etc.). Especially in the field of biomedicine, Xenes are expected to induce a great breakthrough. In this review, we introduce the structural characteristics, synthesis and modification methods of several common Xenes respectively. The general properties including optical, electronic, physical and chemical properties of Xenes are summarized. Their diverse utilization as biosensors for nucleic acid sequencing, bioactive detection, and cancer diagnosis, etc. are also explicitly explored. Finally, the challenges and future perspectives of Xenes in biosensor are discussed.

Publication history
Copyright
Acknowledgements

Publication history

Received: 18 September 2022
Revised: 18 November 2022
Accepted: 18 December 2022
Published: 20 April 2023
Issue date: May 2023

Copyright

© Tsinghua University Press 2023

Acknowledgements

Acknowledgements

This work was supported by the National Natural Science Foundation of China (No. 82002936), Guangdong Scientific and Technological Project (Nos. 2019B1515120043, 2020A151501612, 2021A1515220109, 2022B1515020093, 2020A1515010787 and 2020A1515110749), the Science and Technology Innovation Commission of Shenzhen (No. KCXFZ20201221173413038), the Longhua District Science and Innovation Commission Project Grants of Shenzhen (No. JCYJ201904). Authors also acknowledge the support from the Instrumental Analysis Center of Shenzhen University (Xili Campus).

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