Structural Polymorphism Kinetics Promoted by Charged Oxygen Vacancies in HfO
arXiv:2204.09374 · doi:10.1103/PhysRevLett.130.096801
Abstract
Defects such as oxygen vacancy are widely considered to be critical for the performance of HfO2-based devices, and yet atomistic mechanisms underlying various exotic effects such as wake-up and fluid imprint remain elusive. Here, guided by a lattice-mode-matching criterion, we systematically study the phase transitions between different polymorphs of hafnia under the influences of neutral and positively charged oxygen vacancies by mapping out the minimum energy pathways using a first-principles-based variable-cell nudged elastic band technique. We find that the positively charged oxygen vacancy can substantially promote the transition of various nonpolar phases to the polar phase kinetically, enabled by a transient high-energy tetragonal phase and extreme charge-carrier-inert ferroelectricity of the polar phase. The intricate coupling between structural polymorphism kinetics and the charge state of the oxygen vacancy has important implications for the origin of ferroelectricity in HfO-based thin films as well as wake-up, fluid imprint, and inertial switching.
References in corpus (4)
Cited by in corpus (16)
- Progress in Computational Understanding of Ferroelectric Mechanisms in HfO
- Ultrahigh oxygen ion mobility in ferroelectric hafnia
- Modular development of deep potential for complex solid solutions
- Epitaxial ferroelectric hafnia stabilized by symmetry constraints
- Theoretical lower limit of coercive field in ferroelectric hafnia
- Engineering ferroelectricity in monoclinic hafnia
- Emergent superconductivity in doped ferroelectric hafnia
- Ferro-ionic States and Domains Morphology in HfZrO Nanoparticles
- Phase transitions in typical fluorite-type ferroelectrics
- The origin of the ferroelectric-like orthorhombic phase in oxygen-deficient HfO2-y nanoparticles
- Colossal dielectric response of HfxZr1-xO2 nanoparticles
- A DFT++ study of pristine and oxygen-deficient HfO with self-consistent Hubbard parameters
- Resistive switching and charge accumulation in Hf0.5Zr0.5O2 nanoparticles
- Anharmonic thermodynamics redefines metastability and parent phases in ferroelectric HfO2
- Sizes of Ferroelectricity Appearance and Disappearence in Nanosized Hafnia-Zirconia:Landau-type Theory
- Magnetic properties and charge transport mechanisms in oxygen-deficient HfxZr1-xO2-y nanoparticles