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Zeolitic imidazolate framework-coated acoustic sensors for room temperature detection of carbon dioxide and methane

机译:沸石的imidazolate framework-coated声传感器在室温检测的碳二氧化碳和甲烷

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The integration of nanoporous materials such as metal organic frameworks (MOFs) with sensitive transducers can result in robust sensing platforms for monitoring gases and chemical vapors for a range of applications. Here, we report on an integration of the zeolitic imidazolate framework - 8 (ZIF-8) MOF with surface acoustic wave (SAW) and thickness shear mode quartz crystal microbalance (QCM) devices to monitor carbon dioxide (CO2) and methane (CH4) under ambient conditions. The MOF was directly coated on the Y-Z LiNbO3 SAW delay lines (operating frequency, f(0) = 436 MHz) and AT-cut quartz TSM resonators (resonant frequency, f(0) = 9 MHz) and the devices were tested for various gases in N-2 under ambient conditions. The devices were able to detect the changes in CO2 or CH4 concentrations with relatively higher sensitivity to CO2, which was due to its higher adsorption potential and heavier molecular weight. The sensors showed full reversibility and repeatability which were attributed to the physisorption of the gases into the MOF and high stability of the devices. Both types of sensors showed linear responses relative to changes in the binary gas compositions thereby allowing to construct calibration curves which correlated well with the expected mass changes in the sorbent layer based on mixed-gas gravimetric adsorption isotherms measured on bulk samples. For 200 nm thick films, the SAW sensitivities to CO2 and CH4 were 1.44 x 10(-6)/vol and 8 x 10(-8)/vol, respectively, against the QCM sensitivities 0.24 x 10(-6)/vol and 1 x 10(-8)/vol, respectively, which were evaluated as the fractional change in the signal. The SAW sensors were also evaluated for 100 nm-300 nm thick films, the sensitivities of which were found to increase with the thickness due to the increased number of pores for the adsorption of a larger amount of gases. In addition, the MOF-coated SAW delay lines had a good response in wireless mode, demonstrating their potential to operate remotely for the detection of the gases at emission sites across the energy infrastructure.
机译:纳米多孔材料的集成等金属有机框架(mof)敏感传感器会导致健壮的感应气体和化学监测平台蒸汽的应用程序。集成的沸石的报告imidazolate框架- 8 (ZIF-8)财政部声表面波(看到)和厚度剪切模式石英晶体微量天平(药物)设备监控二氧化碳(CO2)和甲烷(CH4)在环境条件下。涂上- z酸锂看到延时线(工作频率f (0) = 436 MHz),切石英TSM谐振器(共振频率f (0) =9 MHz),不同的设备进行测试在环境条件下气体n - 2。设备能够检测二氧化碳的变化或CH4浓度相对较高二氧化碳的敏感性,这是由于其高分子吸附潜力和重重量。可重复性归因于物理吸附的气体进入财政部和高稳定的设备。显示线性响应的相对变化二元气体成分从而允许建立校正曲线相关与预期的质量变化根据混合气重量吸附剂层吸附等温线以批量样品。200纳米厚的电影,看到敏感性二氧化碳和甲烷1.44 x 10(6) /卷%和8 x10(8) / %卷,分别对药物敏感性0.24 x 10(6) / %和卷1 x10(8) / %卷,分别进行评估随着分数的变化信号。传感器也被评估为100 nm - 300 nm厚膜,敏感的发现由于厚度的增加毛孔吸附的数量的增加更大数量的气体。MOF-coated看到延迟线条有很好的反应无线模式,展示他们的潜力操作远程检测的气体整个能量发射地点基础设施。

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