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A fast response and recovery H2S gas sensor based on free-standing TiO2 nanotube array films prepared by one-step anodization method

机译:一种快速响应和回收H2S气体传感器,基于通过一步阳极氧化方法制备的独立式TiO2纳米管阵列膜

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摘要

The free-standing TiO2 nanotube (TiNT) array film was firstly synthesized by a one-step anodization method. The characterization results with SEM, TEM, XRD and EDX indicated that the main compound on the TiNT array film was titania with anatase phase, and the average inner diameter of the nanotube was around 110 nm with a wall thickness of 16 nm and a layer thickness of 3.8 mu m. Subsequently, the TiNT-based gas sensor was fabricated and its sensing properties toward H2S were investigated. The results showed that, operating under the optimum temperature of 300 degrees C, the TiNT-based gas sensor not only had excellent reversibility, selectivity and stability, but also attained the response values 4.5-26.2 to the detected H2S gas at 1-50 ppm, and good linearity between the sensor response and H2S concentration could be observed. Meanwhile, the response and recovery time of the sensor to 50 ppm H2S gas were as low as 22 s and 6 s, respectively. In addition, the growth mechanism of the free-standing TiNT array film and the gas sensing mechanism of the TiNT-based gas sensor towards H2S were also given in the article. Lastly, the outstanding gas sensing properties and easy fabrication of the TiNT-based gas sensor presented the potential industrial applications in the future.
机译:首先通过一步阳极氧化方法合成自由静止的TiO2纳米管(色调)阵列膜。具有SEM,TEM,XRD和EDX的表征结果表明,色调阵列膜上的主要化合物是具有锐钛矿相的二氧化钛,纳米管的平均内径约为110nm,壁厚为16nm,层厚度为约110nm。 3.8亩。随后,制造着基于色的气体传感器,并研究了其对H 2 S的感测性质。结果表明,在300摄氏度的最佳温度下工作,基于色调的气体传感器不仅具有优异的可逆性,选择性和稳定性,还可以在1-50ppm处达到检测到的H2S气体响应值4.5-26.2并且可以观察到传感器响应和H 2 S浓度之间的良好线性度。同时,传感器至50ppm H2S气体的响应和恢复时间分别低至22秒和6秒。另外,在制品中还给出了独立式色调阵列膜的生长机理和朝向H2S的色调基气体传感器的气体传感机制。最后,未来的突出的气体传感性能和易于制造的色调的气体传感器在未来呈现了潜在的工业应用。

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