首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Carbon dioxide sensors based on a surface acoustic wave device with a graphene-nickel-L-alanine multilayer film
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Carbon dioxide sensors based on a surface acoustic wave device with a graphene-nickel-L-alanine multilayer film

机译:基于具有石墨烯-镍-L-丙氨酸多层膜的表面声波装置的二氧化碳传感器

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摘要

Surface acoustic wave (SAW) sensors containing graphene-nickel (Ni)-L-alanine composite sensing films for carbon dioxide (CO2) detection were investigated. ST-cut quartz SAW resonators were modified with L-alanine, Ni nanoparticles and graphene by electrodeposition. The presence of graphene markedly enhanced the CO2 sensing properties of the sensor. The performance of the sensor containing a graphene-Ni-L-alanine composite film depended both on the pH of the solution used to deposit the L-alanine sensitive layer and operation temperature. The CO2 sensing mechanism of the SAW sensor is based on the adsorption of CO2 and H2O gas molecules by graphene, the catalytic reaction of Ni nanoparticles, and the reaction between L-alanine and CO2 gas molecules; that is, the three materials in the sensitive layer have a synergistic effect. From the analysis of changes in acoustic signals, exposure of the sensor to CO2 not only changed the conductivity of the film but also produced an additional capacitance, which ultimately changed the equivalent capacitance of the sensor.
机译:研究了包含石墨烯-镍(Ni)-L-丙氨酸复合传感膜的表面声波(SAW)传感器,用于检测二氧化碳(CO2)。 ST切割石英SAW谐振器通过电沉积用L-丙氨酸,Ni纳米颗粒和石墨烯改性。石墨烯的存在显着增强了传感器的CO2感测特性。包含石墨烯-Ni-L-丙氨酸复合膜的传感器的性能取决于用于沉积L-丙氨酸敏感层的溶液的pH值和操作温度。声表面波传感器的CO2感应机制基于石墨烯对CO2和H2O气体分子的吸附,Ni纳米颗粒的催化反应以及L-丙氨酸与CO2气体分子之间的反应。即,敏感层中的三种材料具有协同作用。通过分析声信号的变化,传感器暴露于二氧化碳中不仅改变了薄膜的导电性,而且还产生了额外的电容,最终改变了传感器的等效电容。

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