氢传感用TiO2纳米管的研究进展

Nurhidaya Soriadi, N. M. Mohamed, F. Hussin
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引用次数: 0

摘要

对准确、快速响应的氢检测的需求在几个行业中至关重要,特别是在医疗诊断中。以二氧化钛纳米管为传感元件,采用阳极氧化后500℃退火法制备。制备的纳米管孔径为内径38 ~ 48 nm,外径57 ~ 73 nm,阳极氧化电压分别为10 V、12 V和15 V。然后将二氧化钛纳米管薄膜集成到传感器配置中并测试其传感性能。孔径最小的二氧化钛纳米管样品对浓度低至10 ppm的氢的检测灵敏度最高。当传感器在300°C温度下工作时,氢传感器的灵敏度也更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of TiO2 nanotubes for hydrogen sensing application
The demand for accurate, fast response hydrogen detection is critical in several industries especially in medical diagnostics. Titania nanotubes used as the sensing element, were fabricated by anodization technique followed by annealing at 500°C. Nanotubes produced was found to have pore size ranging from 38 nm to 48 nm for inner diameter, 57 nm to 73 nm for outer diameter with applied anodization voltage of 10 V, 12 V and 15 V. Titania nanotubes film was then integrated into a sensor configuration and tested for its sensing properties. The sample of titania nanotubes with the smallest pore size was found to exhibit the highest sensitivity for detection of hydrogen with concentration as low as 10 ppm. The sensitivity of the hydrogen sensor was also found to be higher when the sensor is operated at temperature 300°C.
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