Stable phases of freestanding monolayer TiO: The emergence of out-of-plane ferroelectricity
arXiv:2404.08924 · doi:10.1103/PhysRevB.109.165435
Abstract
Despite being successfully synthesized [Zhang , Nat. Mater. \textbf{20}, 1073 (2021)], the monolayer structure of stable hexagonal TiO is unknown, and it is not even clear whether it can exist in a freestanding form. Through first-principles calculations, we have identified two previously uncharted stable structures, namely, distorted 1 1T-TiO and 1T-TiO, both of which are energetically more favourable than commonly adopted 1H and 1T phases. Here structural distortions are characterized by the out-of-plane shifts of Ti atoms due to the pseudo-Jahn-Teller interactions, which break one and all two inversion symmetries of 1T configuration. As a consequence, the 1 1T remains centrosymmetric while the 1T exhibits out-of-plane ferroelectricity. Electronic structure calculations show that both two are wide-bandgap semiconductors with bandgaps larger than their bulk counterparts. Our study not only deepens the understanding of structural instability in wide-gap semiconductors but also adds a new member to the rare family of two-dimensional out-of-plane ferroelectrics.
accepted by PRB
References in corpus (6)
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Computational 2D Materials Database: Electronic Structure of Transition-Metal Dichalcogenides and Oxides
- Many-body perturbation theory calculations using the yambo code
- Possibility of Combining Ferroelectricity and Rashba-like spin splitting in Monolayers of 1T-type Transition-Metal Dichalcogenides MX2
- Realization of AlSb in the double layer honeycomb structure: a robust new class of two-dimensional material
- Excitonic Instability and Electronic Property of Two-dimensional AlSb Limit