High performance oxygen sensor utilizing ultraviolet irradiation assisted ZnO nanorods under low operation temperature

Chen-Shiun Chou, Yung-Chen Wu, Che-Hsin Lin
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引用次数: 5

Abstract

This paper presents a novel ultraviolet (UV) irradiation assisted nanostructured ZnO film for high performance oxygen sensing under a low working temperature. The UV irradiation greatly increases the number of the excited electrons to attract the high electron negativity molecule of oxygen. The response for detecting the oxidation gases can be achieved without using the high catalytic temperature. Nanorod ZnO structures with high exposing area are synthesized on a glass substrate with interdigital sensing electrodes utilizing the developed two-stage sol-gel and hydrothermal processes. An 80 mW LED with the emission wavelength of 370 nm is then used to enhance the sensing performance of the nanostructured ZnO film. Results indicate that the sensing performance of the nano ZnO oxygen sensor is greatly improved. The oxygen sensor can work at a low temperature of 50°C with the assist of UV exposure, which is much lower than the working temperature of typical solid state metal oxide sensors of around 350°C. The response of the UV-assisted ZnO film shows 4.66 times larger than the same film without UV exposure. The method developed in the present study provides a simple yet high performance method for oxygen sensing under low operation temperature.
在低工作温度下,利用紫外辐照辅助ZnO纳米棒的高性能氧传感器
本文提出了一种在低工作温度下紫外辐射辅助下的高性能氧传感纳米ZnO薄膜。紫外辐射大大增加了激发电子的数量,以吸引氧的高电子负性分子。检测氧化气体的响应可以在不使用高催化温度的情况下实现。采用溶胶-凝胶法和水热法在玻璃基板上合成了具有高暴露面积的ZnO纳米棒结构。然后使用发射波长为370 nm的80 mW LED来增强纳米结构ZnO薄膜的传感性能。结果表明,纳米氧化锌氧传感器的传感性能得到了很大的提高。在紫外线照射下,氧传感器可以在50°C的低温下工作,这比典型的固态金属氧化物传感器350°C左右的工作温度低得多。紫外辅助ZnO薄膜的响应比未紫外照射的ZnO薄膜大4.66倍。本研究开发的方法为低工作温度下的氧传感提供了一种简单而高性能的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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