4.8 Article

Optical-Transparent Self-Assembled MXene Film with High-Efficiency Terahertz Reflection Modulation

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 13, Issue 8, Pages 10574-10582

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.0c20787

Keywords

Terahertz; MXene; self-assembly; impedance matching; modulation

Funding

  1. NSFC [U1730138, 1930123]
  2. National Natural Science Foundation of China [61771327]
  3. Science and Technology project of Sichuan Province [2018GZ0328, 19ZDYF2180]
  4. Fundamental Research Funds for Central Universities

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This study successfully achieved high-efficiency modulation of THz waves with optical-transparent self-assembled MXene films, transitioning from antireflection to reflection-enhancing. It provides a new pathway for developing MXene films with optical-transparency and smart THz reflection characteristics.
The modulation of the terahertz (THz) wave is fundamental for its applications in next-generation communications, biological imaging, sensing, and so forth. Searching for higher efficient modulation is still in progress, although plenty of materials have been explored for tuning THz wave. In this work, optical-transparent self-assembled MXene films are used to modulate the THz reflection at the SiO2/MXene/air interface based on the impedance matching mechanism. By adjusting the number of stacked MXene layers/concentrations of MXene dispersions, the sheet conductivity of the MXene films will be changed so that the impedance at the SiO2/MXene/air interface can be tuned and lead to a giant modulation of THz reflection. Particularly, we demonstrate that the MXene films have highly efficient THz modulation from antireflection to reflection-enhancing with a relative reflection of 27% and 406%, respectively. This work provides a new pathway for developing the MXene films with the combination of optical-transparency and high smart THz reflection characteristics, and the films can be applied for THz antireflection or reflection-enhancing.

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