Department of Mechanical Engineering, State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, People's Republic of China.
Nanotechnology. 2017 Oct 6;28(40):405302. doi: 10.1088/1361-6528/aa8150. Epub 2017 Jul 21.
In this paper, we show that tightly focused femtosecond laser irradiation is effective in improving nanojoining of an oxide nanowire (NW) (TiO) to a metal electrode (Pt), and how this process can be used to modify contact states. Enhanced chemical bondings are created due to localized plasmonically enhanced optical absorption at the Pt/TiO interface as confirmed by finite element simulations of the localized field distribution during irradiation. Nano Auger electron spectroscopy shows that the resulting heterojunction is depleted in oxygen, suggesting that a TiO layer is formed between the Pt electrode and the TiO NW. The presence of this redox layer at the metal/oxide interface plays an important role in decreasing the Schottky barrier height and in facilitating chemical bonding. After laser irradiation at the cathode for 10 s at a fluence of 5.02 mJ cm, the Pt/TiO NW/Pt structure displays different electrical properties under forward and reverse bias voltage, respectively. The creation of this asymmetric electrical characteristic shows the way in which modification of the electronic interface by laser engineering can replace the electroforming process in resistive switching devices and how it can be used to control contact states in a metal/oxide interface.
在本文中,我们展示了将飞秒激光聚焦到氧化物纳米线(TiO)与金属电极(Pt)的连接处,可以有效改善纳米连接,以及这一过程如何用于改善接触状态。通过对辐照过程中局部场分布的有限元模拟,证实了局部等离激元增强光吸收可以在 Pt/TiO 界面处产生增强的化学键。纳米俄歇电子能谱表明,所得的异质结中氧元素被耗尽,这表明在 Pt 电极和 TiO NW 之间形成了一层 TiO 层。在金属/氧化物界面处存在这种氧化还原层,在降低肖特基势垒高度和促进化学键合方面起着重要作用。在阴极处用 5.02 mJ cm 的 10 s 的激光辐照后,Pt/TiO NW/Pt 结构在正向和反向偏压下分别显示出不同的电特性。这种不对称电特性的产生表明,通过激光工程对电子界面的修饰可以替代电阻开关器件中的电成型过程,以及如何用于控制金属/氧化物界面的接触状态。