首页> 外文会议>Materials Research Society Symposium on Nanofunctional Materials, Nanostructures, and Novel Devices for Biological and Chemical Detection >Fabrication and Characterization of a Poly (3-Hexylthiophene) Thin Film Micro-Sensor for Hypergolic Vapor Detection
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Fabrication and Characterization of a Poly (3-Hexylthiophene) Thin Film Micro-Sensor for Hypergolic Vapor Detection

机译:聚(3-己基噻吩)薄膜微传感器进行高压蒸汽检测的制备与表征

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A passive chemiresistor micro-sensor was investigated for the detection of hydrazine compounds. Hydrazine compounds are a highly toxic and carcinogenic species exhibiting toxic effects in humans at very low levels of exposure. Therefore, a sensor capable of detecting ppb levels of hydrazine compounds is required to insure the safety of personnel. The present study describes the fabrication, testing, and characterization of a low-cost, ultrasensitive Poly (3-Hexylthiophene) (P3HT) thin film-based micro-sensor for the detection of hydrazine compounds. Standard microelectronic manufacturing techniques were used to form a micro-sensor composed of a silicon substrate, interdigitated gold electrodes, and P3HT sensing film. Responses of the micro-sensor to hydrazine compounds at different temperatures and concentration levels are reported. When exposed to 25ppm hydrazine in nitrogen, the sensor's resistance was measured to change from a few ohms to over 10 Megaohms. The thermal stability of the P3HT micro-sensor and the method to improve thermal stability are also explored. Thermally annealing the P3HT micro-sensor was found to improve thermal stability at high temperatures. Moreover, the sensor exhibits good specificity to hydrazine and does not respond to the presence of NO{sub}2 and/or N{sub}2O.
机译:研究了一种被动化学体微传感器以检测肼化合物。肼化合物是一种高毒性和致癌物种,在极低的暴露水平下对人类表现出毒性作用。因此,需要一种能够检测PPB水平的肼化合物的传感器来确保人员的安全性。本研究描述了用于检测肼化合物的低成本,超敏感的聚(3-己基噻吩)(P3HT)薄膜基微传感器的制备,测试和表征。标准微电子制造技术用于形成由硅衬底,交叉的金电极和P3HT传感膜组成的微传感器。报道了微传感器对不同温度和浓度水平的肼化合物的反应。当暴露于氮气中的25ppm肼时,测量传感器的电阻以从几欧姆到超过10兆米的变化。还探讨了P3HT微传感器的热稳定性和提高热稳定性的方法。发现热退火P3HT微传感器在高温下提高热稳定性。此外,传感器对肼表现出良好的特异性,并且不会响应NO {SUB} 2和/或N} 2O的存在。

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