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首页> 外文期刊>Sensors and Actuators >A low temperature formaldehyde gas sensor based on hierarchical SnO/SnO_2 nano-flowers assembled from ultrathin nanosheets: Synthesis, sensing performance and mechanism
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A low temperature formaldehyde gas sensor based on hierarchical SnO/SnO_2 nano-flowers assembled from ultrathin nanosheets: Synthesis, sensing performance and mechanism

机译:基于超薄纳米片组装而成的SnO / SnO_2纳米级花的低温甲醛气体传感器:合成,传感性能和机理

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摘要

Here we report a hierarchical flower-like SnO/SnO2 gas sensing material for detecting formaldehyde vapor at a low temperature. It was rationally designed and successfully synthesized via a one-step hydrothermal route. The crystal phase, defects, element composition and morphology of the obtained samples were characterized in detail by XRD, FESEM, TEM, Raman, PL, and XPS. The characterized results reveal that hierarchical SnO/SnO2 nano-flowers are assembled from ultrathin nanosheets with about 9-11 nm in thickness. Gas sensing performance shows that the sensor based on SnO/SnO2 nano-flowers has crucial advantages for formaldehyde detection, such as low operating temperature (120 degrees C), excellent selectivity, short response time (7 s), high response value (80.9) and low detection limitation (8.15 ppb). The excellent gas responses of the sensor can be attributed to its unique hierarchical microstructure (for decrease of R-g and increase of R-a) and p-n junction between SnO and SnO2 (for increase of R-a). Finally, the sensing mechanism of the prepared was proposed in detail.
机译:在这里,我们报告了一种分层的花状SnO / SnO2气敏材料,用于在低温下检测甲醛蒸气。它是经过合理设计的,并通过一步一步水热法成功合成。用XRD,FESEM,TEM,Raman,PL和XPS对所得样品的晶相,缺陷,元素组成和形貌进行了详细表征。表征结果表明,分层的SnO / SnO2纳米花是由厚度约为9-11 nm的超薄纳米片组装而成的。气体感测性能表明,基于SnO / SnO2纳米花的传感器在甲醛检测方面具有关键优势,例如工作温度低(120摄氏度),选择性好,响应时间短(7 s),响应值高(80.9)。和低检测限(8.15 ppb)。传感器的出色气体响应可以归因于其独特的分层微观结构(用于降低R-g和增加R-a)以及SnO和SnO2之间的p-n结(用于提高R-a)。最后,详细介绍了所制备制剂的传感机理。

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