铁电性
半金属
拓扑(电路)
点反射
凝聚态物理
材料科学
极化(电化学)
单层
费米能级
反常光电效应
电子能带结构
镜像对称
拓扑序
光电效应
光伏系统
兴奋剂
对称(几何)
拓扑量子数
带隙
光电子学
物理
望远镜
Weyl半金属
纳米技术
作者
Yi-Xiang Wang,Xia Cheng,Shibo Fang,Tao Zhu,Xiaodong Zhou,Shifeng Qian,Tie Yang,Wenhong Wang,Yee Sin Ang
摘要
ABSTRACT Ferroelectric (FE) metals have attracted growing interest because they combine ferroelectricity with metallic behavior and enable polarization‐controlled band topology near the Fermi level. However, the number of known ferroelectric metals is still limited. Here, we employ first‐principles calculations and symmetry analysis to identify three two‐dimensional (2D) ferroelectric metal candidates—XO monolayers (X = Nb, Ta, Rh)—featuring considerable out‐of‐plane polarization and moderate switching barriers. Notably, the polarization of RhO reaches 5.68 pC/m, significantly exceeding those of most reported 2D FE metals. The XO monolayers are also ferroelectric topological semimetals, hosting symmetry‐protected Weyl points along the ‐ path enforced by the mirror symmetry M y , with nontrivial edge states emerging at the projected Weyl points. We also demonstrate an intrinsically large bulk photovoltaic effect (BPVE), arising from the nontrivial band topology and the broken inversion symmetry in the ferroelectrics. Such BPVE responses can be further enhanced through charge doping and strain engineering. Our work establishes XO monolayers as a versatile 2D platform that integrates switchable ferroelectricity with topological semimetal behavior and a giant BPVE, enabling multifunctional nanoelectronic and optoelectronic applications.
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