Changing the properties of Hf$_{0.5}$Zr$_{0.5}$O$_{2}$ during cyclic repolarization of ferroelectric capacitors with different electrode materials

Fuente: arXiv
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Autori principali: Zalyalov, Timur M., Islamov, Damir R.
Natura: Preprint
Pubblicazione: 2022
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author Zalyalov, Timur M.
Islamov, Damir R.
author_facet Zalyalov, Timur M.
Islamov, Damir R.
contents The interest in the ferroelectric non-volatile memory as a candidate for low power consumption electronic memories was raised after the discovery of ferroelectricity in hafnium oxide. Doping by different elements of hafnia films allows improving their ferroelectric properties. In this work, the transport experiments are combined with the simulations to study the evolution of ferroelectric properties and the mean distance between oxygen vacancies during the endurance of hafnium-zirconium oxide in metal-ferroelectric-metal structures to study the impact of different metal electrodes.
format Preprint
id arxiv_https___arxiv_org_abs_2212_10858
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Changing the properties of Hf$_{0.5}$Zr$_{0.5}$O$_{2}$ during cyclic repolarization of ferroelectric capacitors with different electrode materials
Zalyalov, Timur M.
Islamov, Damir R.
Materials Science
Applied Physics
The interest in the ferroelectric non-volatile memory as a candidate for low power consumption electronic memories was raised after the discovery of ferroelectricity in hafnium oxide. Doping by different elements of hafnia films allows improving their ferroelectric properties. In this work, the transport experiments are combined with the simulations to study the evolution of ferroelectric properties and the mean distance between oxygen vacancies during the endurance of hafnium-zirconium oxide in metal-ferroelectric-metal structures to study the impact of different metal electrodes.
title Changing the properties of Hf$_{0.5}$Zr$_{0.5}$O$_{2}$ during cyclic repolarization of ferroelectric capacitors with different electrode materials
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2212.10858