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Rebirth of Liquid Crystals for Sensoric Applications: Environmental and Gas Sensors

机译:传感器应用液晶的再生:环境和气体传感器

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Films and droplets of liquid crystals may soon become an essential part of sensitive environmental sensors and detectors of volatile organic compounds (VOCs) in the air. In this paper a short overview of recent progress in the area of sensors based on liquid crystals is presented, along with the studies of low molar mass liquid crystals as gas sensors. The detection of VOCs in the air may rely on each of the following effects sequentially observed one after the other: (i) slight changes in orientation and order parameter of liquid crystal, (ii) formation of bubbles on the top of the liquid crystalline droplet, and (iii) complete isotropisation of the liquid crystal. These three stages can be easily monitored by a photo camera and/or optical microscopy. Detection limits corresponding to the first stage are typically lower by a factor of at least 3–6 than detection limits corresponding to isotropisation. The qualitative model taking into account the reorientation of liquid crystals is presented to account for the observed changes.
机译:液晶薄膜和液滴可能很快将成为敏感的环境传感器和空气中挥发性有机化合物(VOC)检测器的重要组成部分。本文简要概述了基于液晶的传感器领域的最新进展,以及对低摩尔质量液晶作为气体传感器的研究。空气中VOC的检测可能取决于依次观察到的以下每种效应:(i)液晶的取向和阶数参数略有变化,(ii)在液晶微滴顶部形成气泡(iii)使液晶完全各向同性。这三个阶段可以通过照相相机和/或光学显微镜容易地监视。通常,与第一阶段相对应的检测限比与各向同性相对应的检测限低至少3-6倍。提出了考虑液晶重新取向的定性模型,以说明观察到的变化。

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