AI Article Synopsis

  • HfZrO (HZO) ferroelectrics show great potential for nonvolatile memory but face reliability challenges including wake-up, fatigue, and retention loss.
  • A comparison of HZO-based stacks with TiN and Ru electrodes indicates that both exhibit significant wake-up and retention losses, with Ru implementation worsening fatigue due to the generation of oxygen vacancies.
  • The study reveals that reliability issues in HZO capacitors depend heavily on the electrode type, suggesting that simply replacing electrodes for improved properties may not address underlying problems.

Article Abstract

Despite the great potential of HfZrO (HZO) ferroelectrics, reliability issues, such as wake-up, fatigue, endurance limitations, imprint and retention loss, impede the implementation of HZO to nonvolatile memory devices. Herein, a study of the reliability properties in HZO-based stacks with the conventional TiN top electrode and Ru electrode, which is considered a promising alternative to TiN, is performed. An attempt to distinguish the mechanisms underlying the wake-up, fatigue and retention loss in both kinds of stacks is undertaken. Overall, both stacks show pronounced wake-up and retention loss. Moreover, the fatigue and retention loss were found to be worsened by Ru implementation. The huge fatigue was suggested to be because Ru does not protect HZO against oxygen vacancies generation during prolonged cycling. The vacancies generated in the presence of Ru are most likely deeper traps, as compared to the traps formed at the interface with the TiN electrode. Implementing the new procedure, which can separate the depolarization-caused retention loss from the imprint-caused one, reveal a rise in the depolarization contribution with Ru implementation, accompanied by the maintenance of similarly high imprint, as in the case with the TiN electrode. Results show that the mechanisms behind the reliability issues in HZO-based capacitors are very electrode dependent and simple approaches to replacing the TiN electrode with the one providing, for example, just higher remnant polarization or lower leakages, become irrelevant on closer examination.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9459922PMC
http://dx.doi.org/10.3390/nano12173059DOI Listing

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