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2D ZIF-derived ZnO nanosheets—an example for improving semiconductor metal oxide detector performance in gas chromatography through material design strategy

机译:二维ZIF衍生的ZnO纳米片-通过材料设计策略改善气相色谱中半导体金属氧化物检测器性能的示例

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摘要

Semiconductor metal oxide (SMO)-based GC detector was investigated by rational design of 2D materials used as detector sensing film, which was verified to be a feasible way to overcome tailing and peak spreading phenomena usually existed in SMOs-based GC detector. Specifically, 2D flake-like ZnO chosen as an example was successfully synthesized by employing 2D ZIF-8 as template, and then acted as detector in portable gas chro-matograph. The properties of detector were evaluated via detection of alcohols and other oxygen-containing VOCs. The results exhibited good linear dependence between peak heights and concentrations of target gases with a short response and recovery time (several seconds) and a high sensitivity, low detection limit (ppb level), together with prominent selectivity for oxygen-containing VOCs than hydrocarbons. Moreover, tailing and peak spreading phenomena mentioned above were hardly observed due to a smaller diffusion barrier for 2D material as compared to 3D counter parts. It is concluded that 2D materials-based portable GC detectors indeed possess great potential in practical application in the future.
机译:通过合理设计二维材料作为检测器传感薄膜,研究了基于半导体金属氧化物(SMO)的GC检测器,这被证明是克服基于SMOs的GC检测器中通常存在的拖尾和峰扩散现象的可行方法。具体地,以2D ZIF-8为模板成功地合成了作为实例的2D片状ZnO,然后作为便携式气相色谱仪中的检测器。通过检测醇和其他含氧的VOC评估检测器的性能。结果显示出峰高与目标气体浓度之间的良好线性相关性,响应时间和恢复时间短(几秒钟),灵敏度高,检测限低(ppb级),并且对含氧VOC的选择性比碳氢化合物高。此外,由于2D材料的扩散势垒比3D对应零件小,因此几乎没有观察到上述拖尾和峰扩散现象。结论是,基于二维材料的便携式气相色谱检测器在未来的实际应用中确实具有巨大的潜力。

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