Related Experiment Video
Updated: Feb 12, 2026

Electric Field-controlled Directed Migration of Neural Progenitor Cells in 2D and 3D Environments
Published on: February 16, 2012
First-principles prediction of 2D non-centrosymmetric Al2O3 with tunable piezoelectric and electric-field-responsive
Hongbo Sun1,2, Liping Ding1, Peng Shao1
1School of Electronic Information and Artificial Intelligence, Shaanxi University of Science & Technology, Xi'an 710021, China. shaopeng@sust.edu.cn.
Abstract:
We predict a novel 2D non-centrosymmetric Al2O3 (NCS-Al2O3) structure using first-principles calculations combined with the MAGUS structure search package. This puckered hexagonal structure, featuring an "O-Al-O-Al-O" stacking sequence, exhibits exceptional stability with a formation energy of -2.88 eV per atom, surpassing that of a previously reported planar monolayer phase (-2.39 eV per atom) and closer to the bulk α-Al2O3 value (-3.16 eV per atom). It is an indirect bandgap semiconductor (3.98 eV) with intermediate mechanical stiffness and relatively strong anisotropy (AU ∼ 7.99). Crucially, the broken inversion symmetry enables strong in-plane piezoelectricity (∼0.6 C m-2). Most significantly, an out-of-plane electric field can reversibly switch the NCS-Al2O3 structure between centrosymmetric and non-centrosymmetric states by modulating a low energy barrier (∼0.11 eV). This unique electric-field-responsive behavior, coupled with its high stability and piezoelectricity, positions NCS-Al2O3 as a promising candidate for applications in 2D electronics, in-plane piezoelectric sensors, and electric-field-gated non-volatile memory devices.
More Related Videos
07:44Characterization of Full Set Material Constants and Their Temperature Dependence for Piezoelectric Materials Using Resonant Ultrasound Spectroscopy
Published on: April 27, 2016
08:32Development of Whispering Gallery Mode Polymeric Micro-optical Electric Field Sensors
Published on: January 29, 2013
Related Concept Videos
Properties of Electric Field Lines
For one, the electric field of a positive charge must originate from it. That is because its electric field points away from it. Moreover, since the magnitude of the field asymptotes to zero at infinity, the...
Electric Field
In the new picture, imagine that the first charge sets up an electric field independent of all other charges in the universe. When another charge comes in its vicinity, the second charge experiences an electric force depending on the electric field at that point. The source charge does not...
Determining Electric Field From Electric Potential
In general, regardless of whether the electric field is uniform, it points in the direction of decreasing potential because the force on a positive...
Finding Electric Potential From Electric Field
Electric Field Inside a Conductor
Suppose a piece of metal is placed near a positive charge. The free electrons in the metal are attracted to the external positive charge and migrate freely toward that region. This region then...
The Principle of Superposition and the Gravitational Field