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Manufacturing of zinc oxide structures by thermal oxidation processes as scalable methods towards inexpensive electric generators

机译:通过热氧化过程制造氧化锌结构作为廉价发电机的可扩展方法

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Micro and nanostructured zinc oxide coatings were prepared from anticorrosive or cold galvanized spray paint with 93% of metallic zinc, which has been applied over glass and steel substrates as a thin film. Then, the substrate -films were processed with different methods including direct flame and a regular furnace open to air, for producing the piezoelectric materials via oxidation at high temperature. Different characterization was conducted in this research, not only materials but also the piezo-electric response. The materials characterization included scanning electron microscopy and x-ray diffraction techniques. The piezoelectric response of the fabricated materials was tested in an experimental cantilever setup with a voltage amplification circuit, which data was recorded through an oscilloscope. Results of microscopies confirmed the generation of ZnO nanowires and other micro and nano materials features for some of the samples in which the furnace was used. The sample composition was always confirmed by X-ray diffraction. Piezo electric response experiment showed the functionality of the fabrication method and the generated materials.
机译:微型和纳米结构氧化锌涂料由抗腐蚀性或冷镀锌喷漆制备,具有93%的金属锌,其已在玻璃和钢基板上作为薄膜施加。然后,用不同的方法处理基材 - 耐植物,包括直接火焰和向空气开放的常规炉,通过高温通过氧化产生压电材料。在本研究中进行了不同的表征,不仅是材料,而且还进行了压电反应。材料表征包括扫描电子显微镜和X射线衍射技术。用电压放大电路在实验悬臂设置中测试制造材料的压电响应,数据通过示波器记录。显微镜的结果证实了ZnO纳米线的产生和其他微型和纳米材料的特征,用于使用炉子的一些样品。通过X射线衍射总是证实样品组合物。压电电响应实验表明了制造方法和生产的材料的功能。

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