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Molecularly Imprinted Filtering Adsorbents for Odor Sensing

机译:分子印迹过滤吸附剂的气味传感

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摘要

Versatile odor sensors that can discriminate among huge numbers of environmental odorants are desired in many fields, including robotics, environmental monitoring, and food production. However, odor sensors comparable to an animal’s nose have not yet been developed. An animal’s olfactory system recognizes odor clusters with specific molecular properties and uses this combinatorial information in odor discrimination. This suggests that measurement and clustering of odor molecular properties (e.g., polarity, size) using an artificial sensor is a promising approach to odor sensing. Here, adsorbents composed of composite materials with molecular recognition properties were developed for odor sensing. The selectivity of the sensor depends on the adsorbent materials, so specific polymeric materials with particular solubility parameters were chosen to adsorb odorants with various properties. The adsorption properties of the adsorbents could be modified by mixing adsorbent materials. Moreover, a novel molecularly imprinted filtering adsorbent (MIFA), composed of an adsorbent substrate covered with a molecularly imprinted polymer (MIP) layer, was developed to improve the odor molecular recognition ability. The combination of the adsorbent and MIP layer provided a higher specificity toward target molecules. The MIFA thus provides a useful technique for the design and control of adsorbents with adsorption properties specific to particular odor molecules.
机译:在许多领域,包括机器人技术,环境监测和食品生产中,都需要能够区分大量环境气味的多功能气味传感器。但是,尚未开发出可与动物鼻子媲美的气味传感器。动物的嗅觉系统识别具有特定分子特性的气味簇,并使用此组合信息进行气味辨别。这表明使用人工传感器对气味分子特性(例如极性,大小)进行测量和聚类是一种有前途的气味传感方法。在此,开发了由具有分子识别特性的复合材料组成的吸附剂,用于气味检测。传感器的选择性取决于吸附材料,因此选择具有特定溶解度参数的特定聚合材料来吸附具有各种特性的增香剂。可以通过混合吸附剂材料来改变吸附剂的吸附性能。此外,开发了一种新型的分子印迹过滤吸附剂(MIFA),其由覆盖有分子印迹聚合物(MIP)层的吸附剂基质组成,以提高气味分子的识别能力。吸附剂和MIP层的结合对目标分子具有更高的特异性。因此,MIFA为设计和控制具有特定气味分子特有吸附特性的吸附剂提供了有用的技术。

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