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Metal oxide nanostructures synthesized on flexible and solid substrates and used for catalysts, UV detectors and chemical sensors

机译:在柔性和固体基材上合成的金属氧化物纳米结构,用于催化剂,紫外线检测器和化学传感器

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In this paper we demonstrate the visibility of the low temperature chemical synthesis for developing device quality material grown on flexible and solid substrates. Both colorimetric sensors and UV photodetectors will be presented. The colorimetric sensors developed on paper were demonstrated for heavy metal detection, in particular for detecting copper ions in aqueous solutions. The demonstrated colorimetric copper ion sensors developed here are based on ZnO@ZnS core-shell nanoparticles (CSNPs). These sensors demonstrated an excellent low detection limit of less than 1 ppm of copper ions. Further the colorimetric sensors operate efficiently in a wide pH range between 4 and 11, and even in turbulent water. The CSNPs were additionally used as efficient photocatalytic degradation element and were found to be more efficient than pure ZnO nanoparticles (NPs). Also p-NiO-ZnO thin filmanorods pn junctions were synthesized by a two-step synthesis process and were found to act as efficient UV photodetectors. Additionally we show the effect of the morphology of different CuO nanostructures on the efficiency of photo catalytic degradation of Congo red organic dye.
机译:在本文中,我们演示了低温化学合成对于开发在柔性和固态衬底上生长的器件质量材料的可视性。比色传感器和紫外线光电检测器都将介绍。纸上开发的比色传感器可用于重金属检测,特别是用于检测水溶液中的铜离子。此处开发的经过验证的比色铜离子传感器基于ZnO @ ZnS核壳纳米粒子(CSNP)。这些传感器表现出了极好的低检出限,低于1 ppm的铜离子。此外,比色传感器可在4至11的宽pH范围内有效运行,甚至在湍流的水中也能有效运行。 CSNPs还被用作有效的光催化降解元素,并且被发现比纯ZnO纳米颗粒(NPs)更有效。还通过两步合成工艺合成了p-NiO / n-ZnO薄膜/纳米棒pn结,发现它们可作为有效的紫外线光电探测器。此外,我们显示了不同的CuO纳米结构的形态对刚果红有机染料光催化降解效率的影响。

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