National Institute of Materials Physics, Atomistilor 105 bis, Magurele 077125, Romania.
ACS Appl Mater Interfaces. 2014 Feb 26;6(4):2929-39. doi: 10.1021/am405508k. Epub 2014 Jan 29.
Electrode interface is a key element in controlling the macroscopic electrical properties of the ferroelectric capacitors based on thin films. In the case of epitaxial ferroelectrics, the electrode interface is essential in controlling the leakage current and the polarization switching, two important elements in the read/write processes of nonvolatile memories. However, the relation between the polarization bound charges and the electronic properties of the electrode interfaces is not yet well understood. Here we show that polarization charges are controlling the height of the potential barriers at the electrode interfaces in the case of Pb(Zr,Ti)O3 and BaTiO3 epitaxial films. The results suggest that the height is set to a value allowing rapid compensation of the depolarization field during the polarization switching, being almost independent of the metals used for electrodes. This general behavior open a new perspective in engineering interface properties and designing new devices based on epitaxial ferroelectrics.
电极界面是控制基于薄膜的铁电电容器宏观电性能的关键因素。在外延铁电体的情况下,电极界面对于控制漏电流和极化反转至关重要,这是非易失性存储器的读写过程中的两个重要元素。然而,极化束缚电荷与电极界面的电子性质之间的关系尚未得到很好的理解。在这里,我们表明,在外延 Pb(Zr,Ti)O3 和 BaTiO3 薄膜的情况下,极化电荷控制着电极界面处势垒的高度。结果表明,高度被设置为在极化反转过程中快速补偿去极化场的值,该值几乎与用于电极的金属无关。这种普遍行为为工程界面性质和基于外延铁电体的设计新型器件开辟了新的视角。