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首页> 外文期刊>Sensors and Actuators >MOF-Derived 1 D a-Fe_2O_3/NiFe_2O_4 heterojunction as efficient sensing materials of acetone vapors
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MOF-Derived 1 D a-Fe_2O_3/NiFe_2O_4 heterojunction as efficient sensing materials of acetone vapors

机译:MOF衍生的1 D a-Fe_2O_3 / NiFe_2O_4异质结作为丙酮蒸气的有效传感材料

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摘要

The key challenge to develop gas sensors with high performances lies in the novel design of superior functional materials for effective reactions between target gases and sensing layers. Metal-organic frameworks (MOFs) have emerged as versatile candidates for preparation of ideal nanostructured materials with controllable composition, various structures and tunable pore size. Herein, a series of Fe-based and Fe/Ni-based one-dimensional (1D) nanostructures using MOFs as templates were prepared systematically. As a result of the hollow structure and nanohybrid features, the optimized alpha-Fe2O3/NiFe2O4 nanotubes can exhibit high specific surface area (118.03 m(2) g(-1)) and provide a mass of active sites compared to individual components (alpha-Fe2O3 nanowires and NiFe2O4 nanowires), which is beneficial to improve the response (R-a/R-g = 23) to acetone vapors. In addition, the smart design also endows the sensor based on alpha-Fe2O3/NiFe2O4 nanotubes with good selectivity, fast response time (4 s) and long-term stability (30 days). In this work, the advantages of 1D hollow heterogeneous materials will provide a new perspective of MOF-derived nanostructures for the particular application in acetone gas sensors.
机译:开发高性能气体传感器的关键挑战在于新颖的高级功能材料设计,以实现目标气体与传感层之间的有效反应。金属有机骨架(MOF)已成为制备具有可控组成,各种结构和可调孔径的理想纳米结构材料的多功能候选物。在这里,系统地准备了一系列使用MOFs作为模板的Fe基和Fe / Ni基一维(1D)纳米结构。由于具有中空结构和纳米杂化特征,经过优化的alpha-Fe2O3 / NiFe2O4纳米管可以展现出高的比表面积(118.03 m(2)g(-1)),并且与单个组件相比,可以提供大量的活性位点(alpha -Fe2O3纳米线和NiFe2O4纳米线),有利于改善对丙酮蒸气的响应(Ra / Rg = 23)。此外,智能设计还赋予了基于α-Fe2O3/ NiFe2O4纳米管的传感器良好的选择性,快速的响应时间(4 s)和长期稳定性(30天)。在这项工作中,一维中空异质材料的优势将为MOF衍生的纳米结构在丙酮气体传感器中的特殊应用提供新的视角。

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