首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Terahertz split-ring metamaterials as transducers for chemical sensors based on conducting polymers: a feasibility study with sensing of acidic and basic gases using poly aniline chemosensitive layer
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Terahertz split-ring metamaterials as transducers for chemical sensors based on conducting polymers: a feasibility study with sensing of acidic and basic gases using poly aniline chemosensitive layer

机译:太赫兹裂环超材料作为基于导电聚合物的化学传感器的换能器:使用聚苯胺化学敏感层感测酸性和碱性气体的可行性研究

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摘要

We report on the first application of terahertz metamaterials acting as transducers for chemical sensors based on conducting polymers, hi our feasibility study aimed at sensing of gaseous hydrochloric and ammonia, a two-dimensional sensor metamaterial consisting of an array of split-ring resonators on the surface of undoped silicon wafer was prepared. The surface of the resonator was coated with a 150-um layer of polyaniline. Binding of hydrogen chloride to polyaniline leads to distinct changes in the resonance frequency of the metamaterial. Measurements can be performed both in the reflection and transmission mode. A numerical simulation of the response revealed an increase of both the real and the imaginary components of the dielectric function of the polyaniline film. These changes are attributed to the transition from emaraldine base to emeraldine salt. The results demonstrate a new approach for formation of highly sensitive transducers for chemical sensors.
机译:我们报告了太赫兹超材料作为基于导电聚合物的化学传感器的换能器的首次应用。在我们的旨在研究气态盐酸和氨气的可行性研究中,这是一种二维的传感器超材料,由在其上的裂环共振器阵列组成。制备未掺杂的硅晶片的表面。谐振器的表面涂有150微米的聚苯胺层。氯化氢与聚苯胺的结合导致超材料的共振频率发生明显变化。可以在反射和透射模式下进行测量。响应的数值模拟表明,聚苯胺薄膜介电功能的实部和虚部都增加了。这些变化归因于从翡翠碱到祖母绿盐的过渡。结果证明了一种用于化学传感器的高灵敏度传感器形成的新方法。

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