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Single WS2 Nanotube-Based Field Effect Transistor: Ambipolar Conduction and Self-Powered Photodetection

  • Loredana Viscardi
  • , Aniello Pelella
  • , Filippo Giubileo
  • , Luca Camilli
  • , Kimberly Intonti
  • , Maurizio Passacantando
  • , Yao Guo
  • , Alla Zak
  • , Antonio Di Bartolomeo
  • University of Salerno
  • University of Rome Tor Vergata
  • National Research Council of Italy
  • University of L'Aquila
  • Holon Institute of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Semiconductive nanotubes offer the potential for miniaturized transistors with enhanced gate control through various configurations. In this work, we fabricated and electrically characterized a single WS2 nanotube-based field-effect transistor under both dark and white light illumination at ambient pressure and temperature. At drain voltages higher than 1 V, the device exhibits ambipolar conduction, with a hole mobility of 0.2 cm2V-1s-1 and an electron mobility of 0.13 cm2V-1s-1 at Vds=2V. The gate modulation has been extensively investigated, applying gate voltages up to 100 V. Furthermore, the WS2 nanotube-based device was evaluated as a photodetector, demonstrating light-induced modulation of the channel current via both gate and drain control. The single WS2 nanotube-based transistor also operates in self-powered mode, achieving a short-circuit current of 2.6 pA and an open-circuit voltage of approximately 3 mV. The electrical properties of this device show potential for complementary metal-oxide semiconductor (CMOS) applications, and contribute to the development of optoelectronic devices, including self-powered photodetectors.

Original languageEnglish
Title of host publication25th IEEE International Conference on Nanotechnology, NANO 2025
EditorsFrancesca Urban, Aniello Pelella, Antonio Di Bartolomeo
PublisherIEEE Computer Society
Pages184-189
Number of pages6
ISBN (Electronic)9798331512712
DOIs
Publication statusPublished - 2025
Event25th IEEE International Conference on Nanotechnology, NANO 2025 - Washington, United States
Duration: 13 Jul 202516 Jul 2025

Publication series

NameProceedings of the IEEE Conference on Nanotechnology
ISSN (Print)1944-9399
ISSN (Electronic)1944-9380

Conference

Conference25th IEEE International Conference on Nanotechnology, NANO 2025
Country/TerritoryUnited States
CityWashington
Period13/07/2516/07/25

Keywords

  • ambipolar conduction
  • nanotube
  • photodetectors
  • self-powered
  • transistor

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