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MOF-Based Membrane Encapsulated ZnO Nanowires for Enhanced Gas Sensor Selectivity

机译:基于MOF的膜封装ZnO纳米线可增强气体传感器的选择性

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Gas sensors are of a great interest for applications including toxic or explosive gases detection in both in-house and industrial environments, air quality monitoring, medical diagnostics, or control of food/cosmetic properties. In the area of semiconductor metal oxides (SMOs)-based sensors, a lot of effort has been devoted to improve the sensing characteristics. In this work, we report on a general methodology for improving the selectivity of SMOx nanowires sensors, based on the coverage of ZnO nanowires with a thin ZIF-8 molecular sieve membrane. The optimized ZnO@ZIF-8-based nanocomposite sensor shows markedly selective response to H-2 in comparison with the pristine ZnO nanowires sensor, while showing the negligible sensing response to C7H8 and C6H6. This original MOF-membrane encapsulation strategy applied to nanowires sensor architecture pave the way for other complex 3D architectures and various types of applications requiring either gas or ion selectivity, such as biosensors, photo(catalysts), and electrodes.
机译:气体传感器对于包括室内和工业环境中的有毒或爆炸性气体检测,空气质量监测,医学诊断或食品/化妆品性能控制等应用非常感兴趣。在基于半导体金属氧化物(SMO)的传感器领域,已经做出了很多努力来改善传感特性。在这项工作中,我们报告了基于薄ZIF-8分子筛膜覆盖ZnO纳米线的通用方法,用于提高SMOx纳米线传感器的选择性。经过优化的基于ZnO @ ZIF-8的纳米复合材料传感器与原始ZnO纳米线传感器相比,对H-2表现出明显的选择性响应,而对C7H8和C6H6的传感响应却可以忽略不计。这种最初用于纳米线传感器架构的MOF膜封装策略为其他复杂的3D架构和需要气体或离子选择性的各种类型的应用铺平了道路,例如生物传感器,光(催化剂)和电极。

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