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Carbon nanotube based gas sensor for expiration detection of perishable food

机译:基于碳纳米管的气体传感器,用于易腐食品的过期检测

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With increasing pressure on food industry to reduce waste while meeting the demand for high food quality and safety, there is a strong motivation for research into sensors for monitoring freshness and general food quality. Degradation of fresh meat and produce is related to metabolic activities of microorganisms which commonly result in formation of gaseous compounds such as CO2. Monitoring the freshness and quality of the food can therefore be accomplished by monitoring the release of these gases in the food package. In this study, an approach to create sensors for detecting gases released by perished food is described. Sensor test is conducted with CO2 which is a common gas related to the degradation process of food. The sensor is based on Carbon Nanotubes (CNTs) as sensing elements. A local synthesis technique is used to directly integrate the CNTs onto silicon-based circuits at room temperature. Fabricated CNT-based structures have successfully demonstrated the ability to detect CO2. The sensitivity and selectivity of gas sensors to different gas compounds were also studied. The results indicate that this approach is promising for fabrication of CNT-based gas sensors at low cost for determination of food freshness and quality, making possible complete gas sensors including CNT sensing elements, CMOS signal processing and RF communication on the same chip, manufactured and integrated at the wafer-level scale.
机译:随着食品工业在减少浪费,同时满足高食品质量和安全性要求方面的压力越来越大,人们强烈希望研究用于监测新鲜度和总体食品质量的传感器。新鲜肉类和农产品的降解与微生物的代谢活动有关,微生物的代谢活动通常导致形成气态化合物,例如CO 2 。因此,可以通过监测食品包装中这些气体的释放来监测食品的新鲜度和质量。在这项研究中,描述了一种创建传感器的方法,该传感器用于检测食物腐烂而释放的气体。传感器测试使用与食物降解过程有关的常见气体CO 2 进行。该传感器基于碳纳米管(CNTs)作为传感元件。在室温下,使用局部合成技术将CNT直接集成到基于硅的电路上。制备的基于CNT的结构已成功证明了检测CO 2 的能力。还研究了气体传感器对不同气体化合物的敏感性和选择性。结果表明,该方法有望以低成本制造用于确定食品新鲜度和质量的基于CNT的气体传感器,从而使包括CNT传感元件,CMOS信号处理和同一芯片上的RF通信在内的完整的气体传感器得以制造和制造。以晶圆级规模集成。

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