领域(数学分析)
铁电性
扫描隧道显微镜
材料科学
极地的
边界(拓扑)
电场
原子单位
磁畴壁(磁性)
凝聚态物理
领域(数学)
显微镜
纳米技术
化学物理
物理
光电子学
光学
电介质
数学分析
数学
量子力学
天文
磁化
磁场
纯数学
作者
Fan Zhang,Zhe Wang,Lixuan Liu,Anmin Nie,Yanxing Li,Yongji Gong,Wenguang Zhu,Chenggang Tao
标识
DOI:10.1038/s41467-023-44642-9
摘要
Abstract Domain boundaries have been intensively investigated in bulk ferroelectric materials and two-dimensional materials. Many methods such as electrical, mechanical and optical approaches have been utilized to probe and manipulate domain boundaries. So far most research focuses on the initial and final states of domain boundaries before and after manipulation, while the microscopic understanding of the evolution of domain boundaries remains elusive. In this paper, we report controllable manipulation of the domain boundaries in two-dimensional ferroelectric In 2 Se 3 with atomic precision using scanning tunneling microscopy. We show that the movements of the domain boundaries can be driven by the electric field from a scanning tunneling microscope tip and proceed by the collective shifting of atoms at the domain boundaries. Our density functional theory calculations reveal the energy path and evolution of the domain boundary movement. The results provide deep insight into domain boundaries in two-dimensional ferroelectric materials and will inspire inventive applications of these materials.
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