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Highly piezoelectric BaTiO3 nanorod bundle arrays using epitaxially grown TiO2 nanomaterials

机译:高度压电BATIO3纳米棒束阵列使用外延生长的TiO2纳米材料

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摘要

Low-dimensional piezoelectric nanostructures such as nanoparticles, nanotubes, nanowires, nanoribbons and nanosheets have been developed for potential applications as energy harvesters, tunable sensors, functional transducers and low-power actuators. In this study, lead-free BaTiO3 nanorod bundle arrays (NBA) with highly piezoelectric properties were successfully synthesized on fluorine-doped tin oxide (FTO) substrate via a two-step process consisting of TiO2 epitaxial growth and BaTiO3 conversion. Through the TiO2 epitaxial growth on FTO substrate, (001) oriented TiO2 nanostructures formed vertically-aligned NBA with a bundle diameter of 80 nm and an aspect ratio of six. In particular, chemical etching of the TiO2 NBA was conducted to enlarge the surface area for effective Ba2+ ion diffusion during the perovskite conversion process from TiO2 to BaTiO3. The final structure of perovskite BaTiO3 NBA was found to exhibit a feasible piezoelectric response of 3.56 nm with a clear phase change of 180 degrees from the single BaTiO3 bundle, by point piezoelectric forced microscopy (PFM) analysis. Consequently, highly piezoelectric NBA could be a promising nanostructure for various nanoscale electronic devices.
机译:已经开发出低维压电纳米结构,例如纳米颗粒,纳米管,纳米线,纳米杆和纳米晶片,用于潜在的应用,作为能量收割机,可调谐传感器,功能换能器和低功耗致动器。在该研究中,通过由TiO 2外延生长和BATIO3转化组成的两步​​方法,在氟掺杂的锡氧化物(FTO)衬底上成功地合成了具有高压电性能的无铅BATIO3纳米槽阵列(NBA)。通过TiO2对FTO底物上的外延生长,(001)取向TiO2纳米结构,垂直排列的NBA形成,束直径为80nm,纵横比为6。特别地,进行TiO 2 NBA的化学蚀刻以在从TiO2至BaTiO3的钙钛矿转化过程中扩大用于有效的Ba2 +离子扩散的表面积。发现Perovskite BATIO3 NBA的最终结构表现出3.56nm的可行压电响应,通过点压电强制显微镜(PFM)分析,从单个BATIO3束的透明相位变化为180度。因此,高度压电NBA可以是各种纳米级电子设备的有希望的纳米结构。

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