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  1. The dead layer is also formed by chemical intermixing between the electrode and the ferroelectric film. Considering the HZO ferroelectric film, if its thickness is decreased below 5 nm, orthorhombic formation is suppressed, so the device's performance is decreased sharply.

  2. 23 dic 2020 · Share. Tools. In this study, we investigate the effects of various electrodes on the ferroelectric properties of ultrathin HfZrO x (HZO) films. The ferroelectric polarization is totally suppressed in the HZO films with TiN and W bottom electrodes when the film thickness is below 5 nm.

  3. 15 giu 2016 · Abstract. Interfacial dead layer effect has been widely noticed in the past and was thought to be responsible for the critical thickness of ferroelectric thin film. Despite extensive studies, the origin is still under fierce debate. The dead layer even exists at the perfect interface without defects and impurities.

    • Qiong Yang, Juexian Cao, Yichun Zhou, Lizhong Sun, Xiaojie Lou
    • 2016
  4. 15 mag 2017 · Intrinsic dead layer effects in relaxed epitaxial BaTiO3 thin film grown by pulsed laser deposition - ScienceDirect. Materials & Design. Volume 122, 15 May 2017, Pages 157-163. Intrinsic dead layer effects in relaxed epitaxial BaTiO3 thin film grown by pulsed laser deposition. Author links open overlay panel. Y. Gagou a. , J. Belhadi a. ,

    • Y. Gagou, J. Belhadi, B. Asbani, M. El Marssi, J.-L. Dellis, Yu. I. Yuzyuk, I.P. Raevski, J.F. Scott
    • 2017
  5. 2 apr 2019 · Dead layer thickness estimation at the ferroelectric film-metal interface in PZT | Applied Physics Letters | AIP Publishing. Research Article | April 02 2019. Dead layer thickness estimation at the ferroelectric film-metal interface in PZT. Yu. V. Podgorny; K. A. Vorotilov; A. S. Sigov; J. F. Scott. Author & Article Information.

  6. 20 mag 2022 · A dead layer without superconductivity, i.e., zero resistance and Meissner effect, commonly exists at the interface between substrate and superconducting film. It is demonstrated that the...

  7. applications. The experimentally observed capacitance of such film nanocapacitors is, however, an order of magnitude lower than expected. This dramatic drop in capacitance is attributed to the so-called “dead layer” – a low-permittivity layer at the metal-dielectric interface in series with the high-permittivity dielectric.