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Hydrothermal growth of ZnO nanowires on flexible fabric substrates

机译:ZnO纳米线在柔性织物基底上的水热生长

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ZnO nanowires (NWs) would provide significant enhancement in sensitivity due to high surface to volume ratio. We investigated the first methodical study on the quantitative relationship between the process parameters of solution concentration ratio, structure, and physical and properties of ZnO NWs grown on different flexible fabric surfaces. To develop a fundamental following concerning various substrates, we controlled the growth speed of ZnO NWs and nanowires on cotton surface with easy and moderate cost fabrication method. Using ammonium hydroxide as the reactant with zinc nitrate hexahydrate, ZnO NWs layer have been grown on metal layers, instead of seed layer. ZnO NWs fabrication was done on different fabric substrates such as wool, nylon and polypropylene (PP). After the ZnO NWs grown to each substrates, we coated insulating layer with polyurethane (PU) and ethyl cellulose for prevent external intervention. Detailed electrical characterization was subsequently performed to reveal the working characteristics of the hybrid fabric. For electrical verification of fabricated ZnO NWs, we implemented measurement impact test and material properties with FFT analyzer and LCR meter.
机译:ZnO纳米线(NWS)将由于高表面与体积比为敏感性而显着提高。我们调查了在不同柔性织物表面上生长的ZnO NWS溶液浓度,结构和物理和性质的过程参数之间的定量关系的第一方法研究。为了开发有关各种基材的基本,我们将ZnO NWS和纳米线的生长速度控制在棉表面上,具有简单和中等的成本制作方法。使用氢氧化铵作为与硝酸锌六水合物的反应物,ZnO NWS层已在金属层上生长,而不是种子层。在不同的织物基材上进行ZnO NWS制造,例如羊毛,尼龙和聚丙烯(PP)。在向每个基材生长的ZnO NW之后,我们用聚氨酯(PU)和乙基纤维素涂覆绝缘层,以防止外部干预。随后进行详细的电学表征以揭示杂化织物的工作特性。对于制造的ZnO NWS的电气验证,我们使用FFT分析仪和LCR计实现了测量冲击试验和材料特性。

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