Van der Waals heteroepitaxial AZO/NiO/AZO/muscovite (ANA/muscovite) transparent flexible memristor

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalNot applicablepeer-review

29 Scopus Citations
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Author(s)

  • Van-Qui Le
  • Thi-Hien Do
  • José Ramón Durán Retamal
  • Pao-Wen Shao
  • Yu-Hong Lai
  • Wen-Wei Wu
  • Yu-Lun Chueh
  • Ying-Hao Chu

Detail(s)

Original languageEnglish
Pages (from-to)322-329
Journal / PublicationNano Energy
Volume56
Online published23 Oct 2018
Publication statusPublished - Feb 2019
Externally publishedYes

Abstract

Multifunctional electronics featuring optical transparency, portability, mechanical flexibility, light-weight and environment-friendly are of great demands for next-generation smart electronics. Memristor represents one of the important chains in next-generation devices as the information computing and storage component. Here, we design the transparent flexible structure based on van der Waals heteroepitaxial AZO/NiO/AZO/muscovite (ANA/muscovite) for a memristor application. The (ANA/muscovite) memristor satisfies all the hardest requirements of a transparent soft device such as optical transparency over 80% in visible light and high performance with a ON/OFF resistance ratio > 105, stable endurance to 103 cycles and long retention time of 105 s. In addition, the ANA/muscovite memristor can work at various bending radii down to 5 mm, a mechanical bending after 1000 cycles at a curvature with a radius of 6.5 mm and a high temperature up to 185 °C, which deliver a pathway for future applications in flexible transparent smart electronics.

Research Area(s)

  • Aluminum doped zinc oxide (AZO), AZO/NiO/AZO/muscovite, Transparent flexible memristor, Van der Waals

Citation Format(s)

Van der Waals heteroepitaxial AZO/NiO/AZO/muscovite (ANA/muscovite) transparent flexible memristor. / Le, Van-Qui; Do, Thi-Hien; Retamal, José Ramón Durán; Shao, Pao-Wen; Lai, Yu-Hong; Wu, Wen-Wei; He, Jr-Hau; Chueh, Yu-Lun; Chu, Ying-Hao.

In: Nano Energy, Vol. 56, 02.2019, p. 322-329.

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalNot applicablepeer-review