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基于纳米弹簧的化学电阻的热和光学激活机制。

Thermal and optical activation mechanisms of nanospring-based chemiresistors.

机构信息

Department of Physics and Astronomy, Western Kentucky University, Bowling Green, KY 42101, USA.

出版信息

Sensors (Basel). 2012;12(5):5608-22. doi: 10.3390/s120505608. Epub 2012 May 2.

Abstract

Chemiresistors (conductometric sensor) were fabricated on the basis of novel nanomaterials--silica nanosprings ALD coated with ZnO. The effects of high temperature and UV illumination on the electronic and gas sensing properties of chemiresistors are reported. For the thermally activated chemiresistors, a discrimination mechanism was developed and an integrated sensor-array for simultaneous real-time resistance scans was built. The integrated sensor response was tested using linear discriminant analysis (LDA). The distinguished electronic signatures of various chemical vapors were obtained at ppm level. It was found that the recovery rate at high temperature drastically increases upon UV illumination. The feasibility study of the activation method by UV illumination at room temperature was conducted.

摘要

化学电阻器(电导传感器)是在新型纳米材料——ALD 涂布 ZnO 的二氧化硅纳米弹簧的基础上制造的。本文报道了高温和紫外光照对化学电阻器的电子和气体传感性能的影响。对于热激活化学电阻器,开发了一种区分机制,并构建了用于同时实时电阻扫描的集成传感器阵列。使用线性判别分析 (LDA) 测试了集成传感器的响应。在 ppm 级水平获得了各种化学蒸气的有区别的电子特征。结果发现,在紫外光照下,高温下的恢复速率大大提高。还进行了室温下紫外光照激活方法的可行性研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6b5/3386703/3657538e512b/sensors-12-05608f1.jpg

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