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Analysis on the piezotronic effect in a strained piezo-Schottky junction with AC impedance spectroscopy

机译:交流阻抗光谱法应变压电梭杆点压电效应分析

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Piezotronic effect is always mixed with piezoresistive effect when we investigate the electronic transport behaviors in the study of piezotronic devices. It is essential to separate the two effects, which is beneficial to the data analysis in actual applications. Here, we report a general method, alternative current (AC) impedance spectroscopy, to distinguish the piezotronic and piezoresistive effects in a strained piezo-Schottky junction. The study was performed on a copper (Cu) layer and F:SnO2 (FTO) glass sandwiched zinc oxide (ZnO) nanowire arrays (Cu/ZnO/FTO). The AC spectra measured at various stress were simulated with appropriate equivalent circuits to reveal the possible change in the device. Our results showed the dominant role of piezotronic effect in the Cu/ZnO/FTO structure instead of piezoresistive effect which has been suspected previously. A capacitive effect of the sputtered ZnO seed layer was also observed. The origin of the capacitance was verified by the bias-independent impedance diagrams. This technique has provided a powerful tool to quantitative analysis on the inner changes of a strained piezotronic device, not only piezo-Schottky junction-based diodes, but also pn junction-based phototronics.
机译:当我们调查压电输出装置研究中的电子传输行为时,压电效果总是与压阻效果混合。将两种效果分开至关重要,这有利于实际应用中的数据分析。在这里,我们报告了一般方法,替代电流(AC)阻抗光谱,以区分压电和压阻性效应在紧张的压电肖特基结中。该研究在铜(Cu)层和F:SnO2(FTO)玻璃夹在氧化锌(ZnO)纳米线阵列(Cu / ZnO / FTO)上进行。在各种应力​​下测量的AC光谱用适当的等效电路模拟,以揭示装置的可能变化。我们的结果表明,在Cu / ZnO / FTO结构中压电效应的主要作用,而不是先前被怀疑的压阻效果。还观察到溅射的ZnO种子层的电容效应。通过偏差独立的阻抗图验证了电容的起源。该技术提供了一种强大的工具来定量分析了应变压电装置的内部变化,不仅是基于压电的压电连接的二极管,还提供了基于PN结的光电胞多基罗。

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