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Surface polarity control in ZnO films deposited by pulsed laser deposition

机译:脉冲激光沉积沉积的ZnO膜中的表面极性控制

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摘要

We demonstrate a simple and inexpensive method of surface polarity control of ZnO grown by pulsed laser deposition (PLD). The polarity control is achieved in a straightforward way by changing the thickness of MgO buffer layer. The Zn- and O-polar ZnO films possess very distinct growth rate, electron concentration and mobility as well as different defect structures. These different structural and electronic properties result in significant differences in surface reactivity and device performance. For example, Pd Schottky diodes fabricated onto the O-polar ZnO film exhibit lower barrier height and ideality factor compared with the equivalent Zn-polar devices, while methylammonium lead iodide perovskite films are readily formed on O-terminated and rapidly decompose on Zn-terminated surfaces. This can be attributed to higher photocatalytic activity of Zn-terminated surface, as well as higher surface coverage of adsorbed hydroxyl groups. Consequently, our results indicate that polarity engineering to obtain favorable O-terminated surface can result in improved performance of ZnO-containing optoelectronic devices, while Zn-terminated surfaces could be of interest for photocatalytic and sensing applications.
机译:我们展示了通过脉冲激光沉积(PLD)生长的ZnO表面极性控制的简单且廉价的方法。通过改变MgO缓冲层的厚度,以直接的方式实现极性控制。 Zn和O-极性ZnO膜具有非常明显的生长速率,电子浓度和迁移率以及不同的缺陷结构。这些不同的结构和电子特性导致表面反应性和器件性能的显着差异。例如,与等效Zn极器装置相比,制造在O型极性ZnO膜上的PD肖特基二极管具有较低的阻挡层高度和理想因子,而甲基铅碘化物钙钛矿膜容易在O终止并在Zn终止上快速分解。表面。这可以归因于Zn封端表面的更高的光催化活性,以及​​吸附的羟基的较高表面覆盖。因此,我们的结果表明,极性工程可以获得有利的O封端表面可以导致含ZnO的光电器件的性能提高,而Zn封端的表面可能对光催化和感测应用感兴趣。

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