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Resistive Switching and Polarization Reversal of Hydrothermal-Method-Grown Undoped Zinc Oxide Nanorods by Using Scanning Probe Microscopy Techniques

机译:利用扫描探针显微镜技术对水热法生长的未掺杂氧化锌纳米棒的电阻转换和极化反转

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This paper reports the localized electrical, polarization reversal, and piezoelectric properties of the individual hexagonal ZnO nanorods, which are grown via the hydrothermal method and textured with [0001] orientation. The studies are conducted with conductive atomic force microscopy (c-AFM) and piezoresponse force microscopy (PPM) techniques, The correlation between the resistance switching and polarization reversal is discussed. The c-AFM results show that there is less variation on the Set or reset voltage in nanorod samples, compared to that of the ZnO thin film. With increasing aspect ratio of the nanorods, both set and reset voltages are decreased. The nanorods with low aspect ratio show unipolar resistance switching, whereas both unipolar and bipolar resistance switching are observed when the aspect ratio is larger than 0.26. The PFM results further show the ferroelectric-like property in the nanorods. Comparing with that of the ZnO thin film, the enhanced piezoresponse in the nanorods can be attributed to the size effect. In addition, the piezoresponse force spectroscopy (PFS) experiments are conducted in ambient air, synthetic air, and argon gas. It shows that the depolarization field in the nanorod may be due to the moisture in the environment; Moreover, the increased piezoresponse may relate to the absence of oxygen in the environment. It is also shown that the piezoelectric responses increase nonlinearly with the aspect ratio of the nanorods. By comparing the piezoresponse hysteresis loops obtained from the nanorod samples of as-grown, air-annealed and vacuum-annealed, it is found that the oxygen vacancies are the origin of the polarization reversal in ZnO nanorods. Finally, the tradeoff between the electrical and ferroelectric-like properties is also observed.
机译:本文报道了单个六角形ZnO纳米棒的局部电学,极化反转和压电特性,这些纳米棒通过水热法生长并以[0001]取向织构。通过导电原子力显微镜(c-AFM)和压电响应力显微镜(PPM)技术进行了研究,讨论了电阻转换和极化反转之间的关系。 c-AFM结果表明,与ZnO薄膜相比,纳米棒样品中的置位或复位电压变化较小。随着纳米棒的长宽比的增加,设置电压和复位电压均降低。具有低长宽比的纳米棒显示出单极电阻切换,而当长宽比大于0.26时,则观察到单极和双极电阻切换。 PFM结果进一步显示了纳米棒中的铁电性质。与ZnO薄膜相比,纳米棒中增强的压电响应可归因于尺寸效应。此外,压电响应力谱(PFS)实验是在环境空气,合成空气和氩气中进行的。这表明纳米棒中的去极化场可能是由于环境中的水分引起的。此外,增加的压电响应可能与环境中氧气的缺乏有关。还显示出,压电响应随着纳米棒的纵横比而非线性地增加。通过比较从生长,空气退火和真空退火的纳米棒样品获得的压电响应磁滞回线,发现氧空位是ZnO纳米棒中极化反转的起源。最后,还观察到电性质和铁电性质之间的折衷。

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