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基于新型珊瑚状氧化锌纳米结构阵列的室温下用于甲苯传感的光活化气体探测器。

A Photoactivated Gas Detector for Toluene Sensing at Room Temperature Based on New Coral-Like ZnO Nanostructure Arrays.

作者信息

Yeh Li-Ko, Luo Jie-Chun, Chen Min-Chun, Wu Chih-Hung, Chen Jian-Zhang, Cheng I-Chun, Hsu Cheng-Che, Tian Wei-Cheng

机构信息

Graduate Institute of Electronics Engineering, National Taiwan University, Taipei City 10617, Taiwan.

Department of Chemical Engineering, National Taiwan University, Taipei City 10617, Taiwan.

出版信息

Sensors (Basel). 2016 Oct 31;16(11):1820. doi: 10.3390/s16111820.

Abstract

A photoactivated gas detector operated at room temperature was microfabricated using a simple hydrothermal method. We report that the photoactivated gas detector can detect toluene using a UV illumination of 2 μW/cm². By ultraviolet (UV) illumination, gas detectors sense toluene at room temperature without heating. A significant enhancement of detector sensitivity is achieved because of the high surface-area-to-volume ratio of the morphology of the coral-like ZnO nanorods arrays (NRAs) and the increased number of photo-induced oxygen ions under UV illumination. The corresponding sensitivity (ΔR/R₀) of the detector based on coral-like ZnO NRAs is enhanced by approximately 1022% compared to that of thin-film detectors. The proposed detector greatly extends the dynamic range of detection of metal-oxide-based detectors for gas sensing applications. We report the first-ever detection of toluene with a novel coral-like NRAs gas detector at room temperature. A sensing mechanism model is also proposed to explain the sensing responses of gas detectors based on coral-like ZnO NRAs.

摘要

采用简单的水热法在室温下微制造了一种光激活气体探测器。我们报道这种光激活气体探测器能够在2 μW/cm²的紫外光照下检测甲苯。通过紫外(UV)光照,气体探测器在室温下无需加热就能检测甲苯。由于珊瑚状ZnO纳米棒阵列(NRAs)形态的高表面积与体积比以及紫外光照下光致氧离子数量的增加,探测器灵敏度得到显著提高。与薄膜探测器相比,基于珊瑚状ZnO NRAs的探测器的相应灵敏度(ΔR/R₀)提高了约1022%。所提出的探测器极大地扩展了用于气体传感应用的基于金属氧化物的探测器的动态检测范围。我们首次报道了在室温下用新型珊瑚状NRAs气体探测器检测甲苯。还提出了一种传感机制模型来解释基于珊瑚状ZnO NRAs的气体探测器的传感响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b344/5134479/f88f7b1475b9/sensors-16-01820-g001.jpg

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