Interfacial phenomena in nanocapacitors with multifunctional oxides
Abstract
The analysis of the structure, chemical stability, electronic and ferroelectric properties of the interfaces between Pt(001) and PbZrTiO(001) (PZT) have been performed with methods. We show that the chemical environment plays a critical role in determining the interfacial reconstruction and charge redistribution at the metal/oxide interfaces. We demonstrate that the difference in interfacial bonds formed at the Pt/PZT interfaces with (TiZr)O - and PbO- termination of PZT essentially defines the effectiveness of the screening, and ease of polarisation switching in PZT-based capacitors. The imperfect screening in Pt/PZT/Pt capacitors is caused by strong interfacial bonds formed at the interface with (TiZr)O-terminated film, which is accompanied by the suppressed polarisation of PZT film. In contrast, the capacitors with PbO-terminated PZT show a negligible depolarising field and high polarisation, which is the consequence of weak bonds formed at this type of interfaces. The latter also causes a higher switching barrier than that in the former system.
Keywords
Cite
@article{arxiv.1907.09821,
title = {Interfacial phenomena in nanocapacitors with multifunctional oxides},
author = {Anna V. Kimmel},
journal= {arXiv preprint arXiv:1907.09821},
year = {2020}
}
Comments
7 pages, 6 figures