Ferroelectrically gated two-dimensional bismuth oxyselenides for strain-invariant flexible synaptic thin-film transistors

Jie Wen, Fei Xiao, Zheng Dong Luo, Dongxin Tan, Xuetao Gan, Dawei Zhang, Zhufei Chu, Yinshui Xia, Yan Liu, Genquan Han

Research output: Contribution to journalArticlepeer-review

Abstract

Two-dimensional van der Waals (2D vdW) semiconductors have proven to be of great importance for flexible thin-film transistors (TFTs) owing to their intrinsic mechanical flexibility and superior electronic properties. In particular, bismuth oxyselenide (Bi2O2Se), featuring ultrahigh electron mobility along with facile scalable thin-film growth methods, could offer a new option to deliver massively enhanced potential for flexible TFTs. However, it has remained a challenge to achieve nonvolatile flexible memory devices based on Bi2O2Se TFTs, thereby hindering the extension of Bi2O2Se TFTs to storage and emerging neuromorphic computing applications. Here, a flexible synaptic TFT is demonstrated through the creation of a Bi2O2Se-based ferroelectric field-effect transistor (FeFET) structure on the flexible mica substrate. The proposed device exhibits excellent nonvolatile memory characteristics, including a large memory window, excellent current modulation ratio, great retention, and strong endurance. Furthermore, the Bi2O2Se-based FeFET can be operated as a synaptic device with analog conductance-modulating behaviors. Owing to the superior mechanical flexibility of the component materials and the mica substrate, the Bi2O2Se-based FeFETs can retain their performance against various bending states, showing a strain-invariant electrical performance. This study marks the advancement of Bi2O2Se-based TFTs toward flexible nonvolatile memories and synaptic devices.

Original languageEnglish
Article number152401
JournalScience China Information Sciences
Volume68
Issue number5
DOIs
StatePublished - May 2025

Keywords

  • BiOSe
  • FeFET
  • flexible device
  • nonvolatile memory
  • synaptic transistor

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