铁电性
极化(电化学)
材料科学
价(化学)
凝聚态物理
极化密度
之字形的
金属
电场
光电子学
电介质
化学
物理
磁化
物理化学
量子力学
磁场
有机化学
冶金
数学
几何学
作者
Tasuku Yoshida,Jun Kano,Masaichiro Mizumaki,Y. Tamenori,Kiyofumi Nitta,Kazúo Kato,Satoshi Hinokuma,Norihiro Oshime,Satoshi Hirose,Hitoshi Mikami,Naoshi Ikeda,Tatsuo Fujii,Yuta Nishina,Tomoko Okubo
摘要
At a metal–ferroelectric junction, it has been considered that the electric polarization of the ferroelectric material can affect the electronic structure of the neighboring metal. Here, we demonstrate that the valence state of Pd can be shifted to the unstable high value of 4+ by the electric field of electric polarization in ferroelectric BaTiO3. Study of the absorption fine structure of both hard and soft x rays revealed the existence of Pd4+ states on the surface of Pd oxide nanoparticles. The positions of Pd and oxygen atoms are shifted in opposite directions by the electric field due to the electric polarization of ferroelectric BaTiO3. The atomic displacement of Pd and O forms a zigzag structure, in which the coordination number of Pd atoms is changed from four to six, producing a quadrivalent state. This report presents experimental evidence that ferroelectric polarization can control the electronic states of neighboring metal atoms, and we suggest that using the ferroelectric support effect may produce a new type of catalyst.
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