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Enhanced Pressure Response in ZnO Nanorods due to Spontaneous Polarization Charge

机译:由于自发极化电荷,增强了ZnO纳米棒的压力响应

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We present measurements of the induced charge flow when a compressive force is applied by contacting to a ZnO nanowire (NW). The measured charge transfer from the NW is over 10~4 times larger than expected from the strain-induced piezoelectric response, and is comparable in magnitude to the spontaneous polarization charge, associated with an ideal ZnO NW. A model is presented that compares the total energy of an isolated NW and external capacitor with the total energy when the capacitor and NW form a closed circuit. The analysis shows that it is possible, for realistic values of surface defect creation energy, to have spontaneous polarization charge transferred from a NW to an external capacitor when a circuit is completed between them. We propose that it is possible to use spontaneous polarization charge to get a significantly enhanced response in ZnO-based NW pressure sensors.
机译:当通过接触到ZnO纳米线(NW)施加压缩力时,我们呈现诱导电荷流的测量。来自NW的测量电荷转移比应变引起的压电响应从预期的预期大于10〜4倍,并且与理想的ZnO NW相关的自发极化电荷的大小相当。提出了一种模型,其将隔离的NW和外部电容器的总能量与电容器和NW形成闭合电路的总能量进行比较。分析表明,对于表面缺陷创建能量的现实值,当电路在它们之间完成时,对于表面缺陷创建能量的现实值,从NW转移到外部电容器。我们提出,可以使用自发极化电荷在基于ZnO的NW压力传感器中获得显着增强的响应。

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