DOI: 10.1126/science.adv0235 ISSN: 0036-8075

Synergistic polar states by selective atomic gradients

Sanghyeon Kim, Gi-Jeong Han, Soo-Yoon Hwang, Gahee Noh, P. Karuna Kumari, Kihwan Lee, Min Seop Kim, Jiyong Yoon, Jong Seok Lee, Se Young Park, Si-Young Choi, Gil-Ho Lee, Daesu Lee

Materials that combine distinct properties within a single phase are of fundamental and technological interest. Here, we present a broadly applicable strategy to achieve strong bulk polarity that not only coexists with its originally incompatible properties, such as metallicity, but also synergistically enables exceptional functionalities. A combination of thin-film synthesis, atomic-scale imaging, and theoretical calculations reveals that A-site selective atomic gradients induce strong polar states in otherwise centrosymmetric perovskite oxides ABO 3 . These polar states unconventionally coexist with various preexisting properties, leading to bulk polar metallicity with tunable nonreciprocal transport; high-κ, low-loss dielectricity with an equivalent oxide thickness below 0.1 nanometer; and giant pyroelectricity. This work may enable the development of new multifunctional materials with unusual coexisting and synergistic properties.