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Electromechanical and Photoluminescence Properties of Al-doped ZnO Nanorods Applied in Piezoelectric Nanogenerators

机译:压电纳米发电机中铝掺杂ZnO纳米棒的机电和光致发光特性

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摘要

A piezoelectric nanogenerator based on Al-doped ZnO (AZO) nanorods with a V-zigzag layer is investigated at a low temperature. The growth temperature, growth time, growth concentration, photoluminescence (PL) spectrum, and AZO epitaxial growth on the ITO glass substrate using aqueous solution are reported and the associated electromechanical and PL properties are discussed. In general, the properties of piezoelectric nanogenerators and their functionality at ultralow temperatures (near liquid helium temperature) are important for applications in extreme environments. A V-zigzag layer is used to enhance the bending and compression deformation of the piezoelectric nanogenerator. The electromechanical properties of AZO nanorods are tested using an ultrasonic wave generator. Results show that the percent transmittance decreases with increasing growth time and growth temperature. The intensities of the PL spectrum and the (002) peak orientation increases with increasing growth temperature. AZO at a low growth temperature of 90 (^{circ })C has good piezoelectric harvesting efficiency when the piezoelectric nanogenerator has a zigzag structure. The average current, voltage, and power density of the piezoelectric harvesting are 0.76 (upmu )A, 1.35 mV, and 1.026 nW/mm(^{2}), respectively. These results confirm the feasibility of growing AZO at low temperature. AZO nanorods have potential for energy harvester applications.
机译:在低温下研究了基于具有V字形层的Al掺杂ZnO(AZO)纳米棒的压电纳米发电机。报告了使用水溶液在ITO玻璃基板上的生长温度,生长时间,生长浓度,光致发光(PL)光谱和AZO外延生长,并讨论了相关的机电和PL性能。通常,压电纳米发电机的性能及其在超低温(液氦温度附近)下的功能对于极端环境下的应用至关重要。 V字形层用于增强压电纳米发电机的弯曲和压缩变形。使用超声波发生器测试AZO纳米棒的机电性能。结果表明,透射率百分比随着生长时间和生长温度的增加而降低。 PL光谱和(002)峰取向的强度随生长温度的升高而增加。当压电纳米发电机具有之字形结构时,在90(℃)的低生长温度下的AZO具有良好的压电收集效率。压电式收割机的平均电流,电压和功率密度分别为0.76μA,1.35 mV和1.026 nW / mm(^ {2})。这些结果证实了在低温下生长AZO的可行性。 AZO纳米棒具有能量收集器应用的潜力。

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