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Optical gas sensing properties of nanoporous Nb2O5 films

机译:纳米多孔Nb2O5薄膜的光学气敏特性

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摘要

Nanoporous NbO has been previously demonstrated to be a viable electrochromic material with strong intercalation characteristics. Despite showing such promising properties, its potential for optical gas sensing applications, which involves the production of ionic species such as H, has yet to be explored. Nanoporous NbO can accommodate a large amount of H ions in a process that results in an energy bandgap change of the material which induces an optical response. Here, we demonstrate the optical hydrogen gas (H) sensing capability of nanoporous anodic NbO with a large surface-to-volume ratio prepared via a high temperature anodization method. The large active surface area of the film provides enhanced pathways for efficient hydrogen adsorption and dissociation, which are facilitated by a thin layer of Pt catalyst. We show that the process of H sensing causes optical modulations that are investigated in terms of response magnitudes and dynamics. The optical modulations induced by the intercalation process and sensing properties of nanoporous anodic NbO shown in this work can potentially be used for future optical gas sensing systems.
机译:纳米多孔NbO先前已被证明是一种具有强嵌入特性的可行电致变色材料。尽管显示出如此令人鼓舞的特性,但其在光学气体传感应用中的潜力,包括产生诸如H之类的离子物种,仍有待探索。纳米多孔NbO在导致材料能带隙变化的过程中可容纳大量H离子,从而引起光学响应。在这里,我们展示了通过高温阳极氧化法制备的具有大的表面对体积比的纳米多孔阳极NbO的光学氢气(H)感测能力。薄膜的大活性表面积为有效的氢吸附和离解提供了增强的途径,而Pt催化剂薄层则促进了这些途径。我们表明,H感测的过程会引起光学调制,该光学调制根据响应幅度和动力学进行了研究。这项工作中所示的由纳米多孔阳极NbO的嵌入过程和感测特性引起的光学调制可潜在地用于未来的光学气体感测系统。

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