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Seeing the Unseen: The Role of Liquid Crystals in Gas-Sensing Technologies

机译:看到看不见的:液晶在气体传感技术中的作用

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摘要

Fast, real-time detection of gases and volatile organic compounds (VOCs) is an emerging research field relevant to most aspects of modern society, from households to health facilities, industrial units, and military environments. Sensor features such as high sensitivity, selectivity, fast response, and low energy consumption are essential. Liquid crystal (LC)-based sensors fulfill these requirements due to their chemical diversity, inherent self-assembly potential, and reversible molecular order, resulting in tunable stimuli-responsive soft materials. Sensing platforms utilizing thermotropic uniaxial systems-nematic and smectic-that exploit not only interfacial phenomena, but also changes in the LC bulk, are demonstrated. Special focus is given to the different interaction mechanisms and tuned selectivity toward gas and VOC analytes. Furthermore, the different experimental methods used to transduce the presence of chemical analytes into macroscopic signals are discussed and detailed examples are provided. Future perspectives and trends in the field, in particular the opportunities for LC-based advanced materials in artificial olfaction, are also discussed.
机译:快速,实时检测气体和挥发性有机化合物(VOC)是与现代社会大多数方面相关的新兴的研究领域,从家庭到卫生设施,工业单位和军事环境。传感器特征如高灵敏度,选择性,快速响应和低能量消耗都是必不可少的。基于液晶(LC)的传感器由于其化学分集,固有的自组装电位和可逆分子序列而满足这些要求,导致可调谐刺激响应柔软材料。利用耐热量单轴系统的传感平台 - 令人欣赏的偏见 - 不仅利用界面现象,还可以证明LC散装的变化。特别焦点对不同的相互作用机制和对天然气和VOC分析的调整选择性。此外,讨论了用于将化学分析物的存在进行转化为宏观信号的不同实验方法,并提供了详细的实施例。还讨论了该领域的未来观点和趋势,特别是人工嗅液中基于LC的先进材料的机会。

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