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Electrical gas sensors based on structured organic ultra-thin films and nanocrystals on solid state substrates

机译:在固态基板上基于结构化有机超薄膜和纳米晶体的气体传感器

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摘要

Gas sensors, as useful tools to detect specific gas species such as toxic and explosive gases or volatile organic compounds, are the key components for environmental monitoring, fruit maturity and food safety monitoring, health care, and so on. The present commercial products based on porous metal oxide materials still face problems, such as high temperature operation and low level of selectivity. Thin films or nanostructures of organic materials with thickness or grain size down to nanometer scale represent promising candidates for gas sensing due to their potential for achieving high selectivity, portability and low cost. However, there are still challenges related to their stability, reproducibility and response/recovery speed despite the efforts in materials design, morphology control or device configuration, all of which have been expended during the last few decades. In this review, we summarize the progress of recent research on gas sensors based on organic ultra-thin films and nanostructures. We specifically discuss the effect of microstructure in the active layer on the sensing performance and mechanism.
机译:气体传感器作为检测特定气体种类(如有毒和爆炸性气体或挥发性有机化合物)的有用工具,是环境监测,水果成熟度和食品安全监测,医疗保健等的关键组成部分。基于多孔金属氧化物材料的当前商业产品仍然面临诸如高温操作和低水平选择性的问题。厚度或粒度低至纳米级的有机材料薄膜或纳米结构,由于具有实现高选择性,便携性和低成本的潜力,因此有望用于气体传感。然而,尽管在材料设计,形态控制或装置配置方面进行了努力,但仍存在与其稳定性,可再现性和响应/恢复速度有关的挑战,所有这些都在过去的几十年中花费了很多。在这篇综述中,我们总结了基于有机超薄膜和纳米结构的气体传感器的最新研究进展。我们专门讨论了有源层中的微结构对传感性能和机理的影响。

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