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Preparation of narrow photonic bandgaps located in the near infrared region and their applications in ethanol gas sensing

机译:位于近红外区域的窄光子带隙的制备及其在乙醇气体传感中的应用

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摘要

In this work, we demonstrated the use of a promising sensor based on alumina Photonic Crystals (PC) which can be applied in the field of gas detection owing to the well structured PC with an ultra-narrow Photonic Bandgap (PBG), of which the full width at half maximum is only 30 nm. This type of PC was prepared successfully by using a compensation voltage mode method, which can effectively compensate for the chemical corrosion and the slowing down of ion exchange, resulting in a uniform diameter of the pores in the anodic alumina oxidation (AAO) from beginning to end. The as-prepared sample was applied to detect the concentration of organic vapor, such as ethanol, in this experiment. A large PBG shift is achieved when the concentration of ethanol changes, and the mechanism was also discussed theoretically. This sensor had a good repeatability due to the chemical and physical stability of the matrix material (alumina). These results indicate the potential applications of the as-prepared AAO based PC in the sensing field.
机译:在这项工作中,我们展示了基于氧化铝光子晶体(PC)的有前途的传感器的使用,由于结构良好的PC具有超窄光子带隙(PBG),该传感器可用于气体检测领域。一半的最大全宽仅为30 nm。通过使用补偿电压模式方法成功制备了这种类型的PC,该方法可以有效地补偿化学腐蚀和离子交换的减慢,从而使阳极氧化铝氧化(AAO)中的孔直径始终均匀。结束。在该实验中,将准备好的样品用于检测有机蒸汽(例如乙醇)的浓度。当乙醇浓度发生变化时,PBG的变化较大,并且从理论上对机理进行了探讨。由于基质材料(氧化铝)的化学和物理稳定性,该传感器具有良好的重复性。这些结果表明,所制备的基于AAO的PC在传感领域的潜在应用。

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