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Towards metal-organic framework based field effect chemical sensors: UiO-66-NH2 for nerve agent detection

机译:迈向基于金属-有机框架的场效应化学传感器:用于神经毒剂检测的UiO-66-NH2

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摘要

We present a highly sensitive gas detection approach for the infamous ‘nerve agent’ group of alkyl phosphonate compounds. Signal transduction is achieved by monitoring the work function shift of metal–organic framework UiO-66-NH2 coated electrodes upon exposure to ppb-level concentrations of a target simulant. Using the Kelvin probe technique, we demonstrate the potential of electrically insulating MOFs for integration in field effect devices such as ChemFETs: a three orders of magnitude improvement over previous work function-based detection of nerve agent simulants. Moreover, the signal is fully reversible both in dry and humid conditions, down to low ppb concentrations. Comprehensive investigation of the interactions that lead towards this high sensitivity points towards a series of confined interactions between the analyte and the pore interior of UiO-66-NH2.
机译:我们为臭名昭著的烷基膦酸酯化合物的“神经毒剂”组提供了一种高度灵敏的气体检测方法。信号转导是通过监测金属-有机骨架UiO-66-NH2涂层电极在ppb级目标模拟物浓度下的逸出功变化而实现的。使用开尔文探针技术,我们证明了电绝缘MOF在场效应器件(如ChemFET)中集成的潜力:与以前基于工作功能的神经毒剂模拟物检测相比,提高了三个数量级。此外,在低至ppb低浓度的干燥和潮湿条件下,信号都是完全可逆的。对导致这种高灵敏度的相互作用的全面研究指出,分析物与UiO-66-NH2的孔内部之间存在一系列局限的相互作用。

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