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Sensing Ability of Ferroelectric Oxide Nanowires Grown in Templates of Nanopores

机译:纳米孔模板中生长的铁电氧化物纳米线的传感能力

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摘要

Nanowires of ferroelectric potassium niobate were grown by filling nanoporous templates of both side opened anodic aluminum oxide (AAO) through radiofrequency vacuum sputtering for multisensor fabrication. The precise geometrical ordering of the AAO matrix led to well defined single axis oriented wire-shaped material inside the pores. The sensing abilities of the samples were studied and analyzed in terms of piezoelectric and pyroelectric response and the results were compared for different length of the nanopores (nanotubes)—1.3 µm, 6.3 µm and 10 µm. Based on scanning electronic microscopy, elemental and microstructural analyses, as well as electrical measurements at bending and heating, the overall sensing performance of the devices was estimated. It was found that the produced membrane type elements, consisting potassium niobate grown in AAO template exhibited excellent piezoelectric response due to the increased specific area as compared to non-structured films, and could be further enhanced with the nanowires length. The piezoelectric voltage increased linearly with 16 mV per micrometer of nanowire’s length. At the same time the pyroelectric voltage was found to be less sensitive to the nanowires length, changing its value at 400 nV/µm. This paper provides a simple and low-cost approach for nanostructuring ferroelectric oxides with multisensing application, and serves as a base for further optimization of template based nanostructured devices.
机译:通过射频真空溅射填充两侧开口的阳极氧化铝(AAO)的纳米孔模板,以制备铁电铌酸钾纳米线,用于多传感器制造。 AAO矩阵的精确几何排序导致在孔内部定义明确的单轴定向线状材料。根据压电和热电响应对样品的感测能力进行了研究和分析,并对不同长度的纳米孔(纳米管)-1.3 µm,6.3 µm和10 µm的结果进行了比较。基于扫描电子显微镜,元素和微观结构分析以及弯曲和加热时的电学测量,可以估算设备的整体传感性能。结果发现,与非结构化薄膜相比,由于比表面积增加,所制得的由AAO模板中生长的铌酸钾组成的膜型元件表现出优异的压电响应,并且可以随着纳米线的长度进一步增强。压电电压以每纳米线长度16 mV线性增加。同时,发现热电电压对纳米线的长度不那么敏感,将其值更改为400 nV / µm。本文提供了一种用于多传感应用的纳米结构铁电氧化物的简单,低成本方法,并为进一步优化基于模板的纳米结构器件奠定了基础。

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