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TiO2 based sensor with butterfly wing configurations for fast acetone detection at room temperature

机译:基于TiO2的传感器,具有蝴蝶翼配置,在室温下进行快速丙酮检测

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摘要

The amorphous/nanocrystal hybrid TiO2 based butterfly wing structure (ANH-TiO2-BW) is successfully fabricated via an easily controlled self-deposition sintering method. The hybrid configuration greatly enhances the structural toughness and maintains the original morphology throughout the experiment. The ANH-TiO2-BW configuration is very conductive to gas diffusion, and the calculated value of the diffusion coefficient (Dk) is 0.37 cm(2) s(-1) at room temperature (27 degrees C). As the completely reserved structure provides sufficient effective gas diffusion channels and gas molecule reaction sites, the ANH-TiO2-BW based gas sensor demonstrates a remarkable sensitivity to acetone, up to 1.88 at a detection limit of 5 ppm at room temperature and 180.08 for 200 ppm at an optimal operating temperature of 65 degrees C. Meanwhile, the device exhibits long-term stability, good cycle-to-cycle repeatability and selectivity to trace acetone at room temperature. Moreover, benefiting from the 3D penetrating porous structure, the average response time of the device is only about 1.8 s. This work may open up a new way for the design and application of toxic and harmful gas detection at room temperature.
机译:通过易受控制的自沉积烧结方法成功制造基于无定形/纳米晶混合杂交TiO2(AnH-TiO2-BW)。混合配置大大提高了结构韧性,并在整个实验中保持原始形态。 ANH-TiO2-BW配置对气体扩散非常导向,并且在室温(27℃)下的扩散系数(DK)的计算值是0.37cm(2)秒(-1)。由于完全保留的结构提供足够的有效的气体扩散通道和气体分子反应位点,基于ANH-TiO2-BW的气体传感器对丙酮具有显着敏感性,在室温下的5ppm的检测限度为5ppm,200.08次以180.08的检测限<88 PPM在65℃的最佳工作温度下,该装置具有长期稳定性,良好的循环 - 循环可重复性和在室温下追踪丙酮的选择性。此外,从3D穿透多孔结构中受益,装置的平均响应时间仅为1.8秒。这项工作可以在室温下为毒性和有害气体检测进行设计和应用,开辟了一种新的方式。

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