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Photodetection and piezoelectric response from hard and flexible sponge-like ZnO-based structures

机译:硬质和柔性海绵状ZnO基结构的光电检测和压电响应

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In this work a comprehensive characterization of sponge-like nanostructured zinc oxide films is proposed, with a marked attention to the exhibited sensing properties. Sponge-like zinc oxide films were grown on different kinds of hard and flexible substrates, by a two-step process involving a room temperature sputtering deposition of metallic sponge-like zinc films, followed by a low-temperature oxidation treatment. This method allowed growing films with thickness of a few micrometers. The material presented a polycrystalline porous structure with randomly oriented grains. After the formation of top electrodes, the sensing properties of the samples were assessed. In particular, the films exhibited UV sensing capability, with photocurrents up to four orders of magnitude higher than the current values measured in dark conditions. The material also showed considerable piezoelectric response: the mechanical stimulus exerted by the impact of a water drop delivered on its surface generated intense piezoelectric output voltage peaks, thus proving material sensing capability. A maximum average output power density of 2.4nW/cm~2 was calculated. Such interesting properties make sponge-like ZnO a promising smart material for sensing and energy harvesting applications.
机译:在这项工作中,提出了一种海绵状纳米结构的氧化锌薄膜的全面表征,并特别注意所显示的传感性能。通过两步工艺,在室温下溅射沉积金属海绵状锌膜,然后进行低温氧化处理,从而在不同种类的硬质和柔性基材上生长海绵状氧化锌膜。该方法允许生长厚度为几微米的膜。该材料呈现出具有随机取向晶粒的多晶多孔结构。在形成顶部电极之后,评估样品的感测特性。尤其是,这些膜具有紫外线感应能力,其光电流比在黑暗条件下测得的电流值高四个数量级。该材料还表现出显着的压电响应:在表面传递的水滴所产生的机械刺激会产生强烈的压电输出电压峰值,从而证明了材料的感应能力。计算出的最大平均输出功率密度为2.4nW / cm〜2。如此有趣的特性使海绵状ZnO成为用于传感和能量收集应用的有前途的智能材料。

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