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Capacitive humidity sensors based on large diameter porous alumina prepared by high current anodization

机译:通过大电流阳极氧化制备的基于大直径多孔氧化铝的电容式湿度传感器

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摘要

Humidity sensors based on nanoporous aluminum oxide are described. Accelerated mild anodization technique was employed to prepare ordered porous aluminum oxide templates in phosphoric acid electrolyte at 165 and 185 V, anodization voltages. Impedance spectroscopy was used to characterize sensitivity, response and recovery time of prepared sensors with pore diameters changing from 67 to 190 nm. Increasing the pores diameter to an optimum limit improved the sensing parameters of the prepared sensors. Sensitivity enhancement was accompanied with reduction of humidity sensing threshold to 30% RH at optimum condition. Their low response and recovery time, less than 5 and 0.5 s, respectively, categorize them as ultrafast or rapid sensors. Sensing properties is seen to reduce with reduce in aluminum purity while it improves with increase in the self ordering of alumina template. It is also found that increasing the anions percentage in the pores walls improves the sensing behavior.
机译:描述了基于纳米多孔氧化铝的湿度传感器。采用加速的温和阳极氧化技术,在165和185 V的阳极氧化电压下,在磷酸电解质中制备有序的多孔氧化铝模板。阻抗光谱用于表征孔径从67到190 nm变化的传感器的灵敏度,响应和恢复时间。将孔径增加到最佳极限可以改善所制备传感器的传感参数。在最佳条件下,灵敏度提高伴随着湿度感应阈值降低至30%RH。它们的响应时间和恢复时间都很短,分别不到5 s和0.5 s,将其归类为超快或快速传感器。随着铝纯度的降低,传感性能会下降,而随着氧化铝模板的自定序性的提高,传感性能会提高。还发现增加孔壁中的阴离子百分比可改善感测行为。

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