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Ionic Liquids and Conductive Polymers for Construction of Chemical and Biosensors

机译:用于构建化学和生物传感器的离子液体和导电聚合物

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Chemicals and materials with active ionic species are widely employed in various chemical and electrochemical applications such as solvents, catalysts, sensors, fuel cells, batteries, atomic switches, etc. Ionic liquids (IL) are liquids often composed of bulky organic cations or anions whereas conductive polymers are solids with dopant ions in a rigid organic framework. In this presentation, I will discuss the fundamental research of ionic liquid and conductive polymer interface electrochemistry for sensor applications. Being composed entirely of ions and with a broad structural and functional diversity i.e., bifunctional (organic/inorganic), biphasic (solid/liquid), and biproperty (solvent/electrolyte) materials, ionic liquids have the complementing attributes and the required variability to allow a systematic design process across many components to enhance sensing capability for miniaturized gas sensor system implementation. Being composed with dopant ions in a rigid organic framework, the unique properties of conductive polymers allow ease of functionalization with bio-recognition elements and enable label free electrochemical, optical and mass sensing technologies for study bio-interactions on a single platform. The simplicity of the demonstrated detection principles could yield forward-thinking solutions to many sensors challenges, especially miniaturization and robustness that is essential for their integration with engineering advancements such as portable electronics, networked sensing and next-generation monolithic implementation of autonomous sensors with the performance, cost, power, and operational lifetime characteristics to suit a broad range of applications.
机译:具有活性离子物质的化学品和材料广泛用于各种化学和电化学应用,如溶剂,催化剂,传感器,燃料电池,电池,原子开关等。离子液体(IL)是液体,通常由庞大的有机阳离子或阴离子组成导电聚合物是具有掺杂有机框架中的掺杂剂离子的固体。在本文中,我将讨论离子液体和导电聚合物界面电化学对传感器应用的根本研究。完全由离子和具有宽结构和功能多样性组成,即双官能(有机/无机),双相(固体/液体)和Biproperty(溶剂/电解质)材料,离子液体具有补充属性和所需的变化来允许许多组件的系统设计过程,以增强小型化气体传感器系统实现的感测能力。用刚性有机框架中的掺杂剂离子组成,导电聚合物的独特性质允许易于用生物识别元件官能化,并使自由电化学,光学和质量传感技术进行单一平台的研究生物相互作用。所示的检测原则的简单性可以为许多传感器挑战产生前瞻性思维解决方案,特别是小型化和稳健性,这对于他们与工程进步的集成至关重要,例如便携式电子,网络传感和下一代单一的单片实施具有性能的自主传感器,成本,功率和操作寿命特性,适合广泛的应用。

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