作者
Di Yi, Yujia Wang, Olaf MJ van ʼt Erve, Liubin Xu, Hongtao Yuan, Michael J Veit, Purnima P Balakrishnan, Yongseong Choi, Alpha T N’Diaye, Padraic Shafer, Elke Arenholz, Alexander Grutter, Haixuan Xu, Pu Yu, Berend T Jonker, Yuri Suzuki
发表日期
2020/2/14
期刊
Nature communications
卷号
11
期号
1
页码范围
902
出版商
Nature Publishing Group UK
简介
Electric fields can transform materials with respect to their structure and properties, enabling various applications ranging from batteries to spintronics. Recently electrolytic gating, which can generate large electric fields and voltage-driven ion transfer, has been identified as a powerful means to achieve electric-field-controlled phase transformations. The class of transition metal oxides provide many potential candidates that present a strong response under electrolytic gating. However, very few show a reversible structural transformation at room-temperature. Here, we report the realization of a digitally synthesized transition metal oxide that shows a reversible, electric-field-controlled transformation between distinct crystalline phases at room-temperature. In superlattices comprised of alternating one-unit-cell of SrIrO3 and La0.2Sr0.8MnO3, we find a reversible phase transformation with a 7% lattice change and …
引用总数
202020212022202320244147127
学术搜索中的文章
D Yi, Y Wang, OMJ van ʼt Erve, L Xu, H Yuan, MJ Veit… - Nature communications, 2020