The confluence of state‐of‐the‐art electronic‐structure computations and modern synthetic materials growth techniques is proving indispensable in the search for and discovery of new …
Y Tong, Y Guo, P Chen, H Liu, M Zhang, L Zhang… - Chem, 2017 - cell.com
Perovskite electrocatalysts strongly rely on electronic structure regulation, especially for electron configuration (eg) and conductivity. However, current regulation strategies …
Finding new collective electronic states in materials is one of the fundamental goals of condensed matter physics. Atomic-scale superlattices formed from transition metal oxides …
Transition metal oxides are promising candidates for the next generation of spintronic devices due to their fascinating properties that can be effectively engineered by strain …
AK Jaiswal, D Wang, V Wollersen… - Advanced …, 2022 - Wiley Online Library
The 5d iridium‐based transition metal oxides have gained broad interest because of their strong spin–orbit coupling, which favors new or exotic quantum electronic states. On the …
The origin of ferromagnetism in strained epitaxial LaCoO 3 films has been a long-standing mystery. Here, we combine atomically resolved Z-contrast imaging, electron-energy-loss …
D Fuchs, E Arac, C Pinta, S Schuppler… - Physical Review B …, 2008 - APS
Ferromagnetic order can be induced in La Co O 3 (LCO) thin films by epitaxial strain. Here, we show that the magnetic properties can be “tuned” by epitaxial strain imposed on LCO thin …
Epitaxial strain imposed in complex oxide thin films by heteroepitaxy is recognized as a powerful tool for identifying new properties and exploring the vast potential of materials …
D Meng, H Guo, Z Cui, C Ma, J Zhao… - Proceedings of the …, 2018 - National Acad Sciences
Ferromagnetic insulators are required for many new magnetic devices, such as dissipationless quantum-spintronic devices, magnetic tunneling junctions, etc …