Department of Mechanical Engineering, Polytechnical University of Catalonia (UPC), MicroTech Lab, Colom street 11, 08222 Terrassa, Spain.
SEAT S.A., R&D Department in Future Urban Mobility Concepts, A-2, Km 585, 08760 Martorell, Spain.
Sensors (Basel). 2020 Sep 24;20(19):5478. doi: 10.3390/s20195478.
In recent years, advancements in micromachining techniques and nanomaterials have enabled the fabrication of highly sensitive devices for the detection of odorous species. Recent efforts done in the miniaturization of gas sensors have contributed to obtain increasingly compact and portable devices. Besides, the implementation of new nanomaterials in the active layer of these devices is helping to optimize their performance and increase their sensitivity close to humans' olfactory system. Nonetheless, a common concern of general-purpose gas sensors is their lack of selectivity towards multiple analytes. In recent years, advancements in microfabrication techniques and microfluidics have contributed to create new microanalytical tools, which represent a very good alternative to conventional analytical devices and sensor-array systems for the selective detection of odors. Hence, this paper presents a general overview of the recent advancements in microfabricated gas sensors and microanalytical devices for the sensitive and selective detection of volatile organic compounds (VOCs). The working principle of these devices, design requirements, implementation techniques, and the key parameters to optimize their performance are evaluated in this paper. The authors of this work intend to show the potential of combining both solutions in the creation of highly compact, low-cost, and easy-to-deploy platforms for odor monitoring.
近年来,微加工技术和纳米材料的进步使得能够制造用于检测气味物质的高灵敏度设备。最近在气体传感器的小型化方面所做的努力有助于获得越来越紧凑和便携式的设备。此外,在这些设备的活性层中实施新的纳米材料有助于优化其性能并提高其灵敏度,使其接近人类的嗅觉系统。尽管如此,通用气体传感器的一个共同关注点是它们对多种分析物缺乏选择性。近年来,微制造技术和微流控技术的进步有助于创建新的微分析工具,这些工具是传统分析设备和传感器阵列系统的很好替代,可用于选择性检测气味。因此,本文综述了用于灵敏和选择性检测挥发性有机化合物 (VOC) 的微加工气体传感器和微分析器件的最新进展。本文评估了这些设备的工作原理、设计要求、实施技术以及优化其性能的关键参数。本文的作者旨在展示将这两种解决方案结合起来创建高度紧凑、低成本和易于部署的气味监测平台的潜力。