Scalable and Controllable Flexoelectric Engineering of van der Waals Polar Skyrmion Bubble Arrays
作者:Haoran Xu, Shangui Lan, Tao Xu, Chunfeng Wang, Zhongyi Wang, Youshui He, Xin He, Pu Feng, Shuhui Liu, Bin Fang, Deliang Zhu, Jie Wang, Fei Xue, Kai Chang · 发表于:Nano Letters · 年份:2025 · DOI:10.1021/acs.nanolett.5c04207 · 被引用次数:4 · 研究领域:Nonlocal and gradient elasticity in micro/nano structures、Ferroelectric and Piezoelectric Materials、Advanced Materials and Mechanics
Nontrivial topological polarization textures, including polar skyrmions, possess nanoscale three-dimensional polarization arrangements that exhibit unique properties and promising applications. Theoretically, these nontrivial polar textures can be created and annihilated by a flexoelectricity effect, but experimental realization, particularly on pure silicon substrates, remains elusive. Here, we show a scalable approach of leveraging silicon patterns to induce flexoelectricity in a van der Waals ferroionic CuInP 2 S 6 crystal. Mediated by copper ion migration, this approach can transform conventional ferroelectric CuInP 2 S 6 domains into polar skyrmions. We controllably manipulate the size of polar skyrmions by adjusting the diameter of silicon nanopatterns and the thickness of the CuInP 2 S 6 samples. Such skyrmionic textures can achieve reversible resistance switching. Phase-field simulations, Raman spectroscopy, and second harmonic generation prove that the transformation to polar skyrmions is associated with flexoelectricity-induced collective interactions between electrostatic, elastic, and gradient energy. Our study provides an avenue for artificially engineering nontrivial polar textures toward silicon-based high-density memory.