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首页> 外文期刊>Journal of Materials Research and Technology >Design and application of nanoporous graphene oxide film for CO 2, H 2, and C 2H 2 gases sensing
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Design and application of nanoporous graphene oxide film for CO 2, H 2, and C 2H 2 gases sensing

机译:CO 2 ,H 2 和C < ce:inf loc =“ post”> 2 H 2 气体感应

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Nanoporous Graphene Oxide (NGO) film sensor is designed by combining the modified Hummer method and the spray pyrolysis technique. The structural, morphological, and optical characterizations of the prepared NGO sensor are carried by FTIR, XRD, SEM, and UV–vis spectrophotometer. Based on the morphological study, a homogenous and uniform NGO film with two-dimensional nanoporous structure is prepared. The structural study reveals the existence of high density of oxygen functional groups on a typical GO surface withd-spacing ?0.82?nm. The optical characterization shows intensive and broad absorption band around 335?nm. The NGO film is used as a detector for CO2, H2, C2H2gases at room temperature (20?°C). The response, response and recovery times, and selectivity of the NGO sensor are investigated. Also, the effect of gases concentrations on the resistance of the film is studied. The response and selectivity of the NGO film are in order CO2?>?H2?>?C2H2. The sensor response is 37.04, 16.16, and 2.87% at 60 SCCM for CO2, H2, and C2H2, respectively. The response time is ?25, 100, and 100?s @ 10 SCCM for CO2, H2, and C2H2, respectively. At concentrations of 30 SCCM, the recovery time is 241.4, 437.2, and 674.7?s for C2H2, H2,and CO2, respectively. Finally, a simple mechanism is explained to show the sensing approach.
机译:结合改进的悍马方法和喷雾热解技术设计了纳米多孔氧化石墨烯(NGO)薄膜传感器。制备的NGO传感器的结构,形态和光学特性由FTIR,XRD,SEM和UV-vis分光光度计进行。基于形态学研究,制备了具有二维纳米孔结构的均匀均匀的NGO薄膜。结构研究表明,典型的GO表面存在高密度的氧官能团,间距约为0.82nm。光学表征显示在335?nm附近有密集且宽的吸收带。 NGO膜用作室温(20?C)时CO2,H2,C2H2气体的检测器。研究了NGO传感器的响应,响应和恢复时间以及选择性。此外,研究了气体浓度对薄膜电阻的影响。 NGO膜的响应度和选择性是按CO 2 >> H 2 >> C 2 H 2的顺序排列的。在60 SCCM下,CO2,H2和C2H2的传感器响应分别为37.04、16.16和2.87%。对于10 COCM,CO2,H2和C2H2的响应时间分别为25、100和100µs。在浓度为30 SCCM时,C2H2,H2和CO2的恢复时间分别为241.4、437.2和674.7?s。最后,解释了一种简单的机制来显示感测方法。

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