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首页> 外文期刊>Solid state sciences >Fabrication of ultra-sensitive piperidine chemical sensor with a direct grown well-aligned ZnO nanorods on FTO substrate as a working electrode
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Fabrication of ultra-sensitive piperidine chemical sensor with a direct grown well-aligned ZnO nanorods on FTO substrate as a working electrode

机译:用直接生长的哌啶化学传感器在FTO基板上用直接生长的ZnO纳米棒的制造作为工作电极

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摘要

In this work, we report a direct growth of well-aligned zinc oxide nanorods (ZNRs) on fluorine doped tin oxide (FTO) substrate by a single step chemical method in an aqueous solution; the synthesized ZNRs were then used for piperidine sensing studies, as a working electrode. The ZNRs were uniformly grown in a large area, highly crystalline, and vertically aligned with an average length and diameter of similar to 650 nm and similar to 50 nm, respectively. The vertically aligned ZNRs provide the higher surface area for electrocatalytic activity of piperidine, and thus exhibited an ultra-sensitivity of 527 mu AmM(-1)cm(-2), a low detection limit (similar to 60 nM), and a wide linear detection range from 0.1 mu M to 200 mu M. The improved piperidine sensing response characteristics of direct grown ZNRs on FTO substrate due to the large surface area, higher electrocatalytic activity and the fast electron transfer process, which makes them interesting candidate for fabricating other chemical sensing devices.
机译:在这项工作中,通过在水溶液中通过单步化学方法在氟掺杂的氧化锡(FTO)底物上直接生长氟掺杂氧化锡(FTO)衬底的直接生长;然后将合成的ZnRS用于哌啶感测研究,作为工作电极。 ZnR在大面积,高度结晶的均匀生长,并且垂直对准,平均长度和直径与650nm的直径分别类似于50nm。垂直对准的ZnRS为哌啶的电催化活性提供较高的表面积,因此表现出527μmmm(-1)cm(-2)的超敏感性,低检测限(类似于60nm)和宽线性检测范围为0.1μm至200μm。由于大表面积,更高的电催化活性和快速电子转移过程,对FTO基底直接生长ZnRS的改进哌啶感测响应特性,这使得它们成为塑造的有趣候选者化学传感装置。

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