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Photochemistry-Based Method for the Fabrication of SnO2 Monolayer Ordered Porous Films with Size-Tunable Surface Pores for Direct Application in Resistive-Type Gas Sensor

机译:基于光化学的表面可调节孔径的SnO2单层有序多孔膜的制备方法,可直接应用于电阻型气体传感器

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摘要

A new photochemistry-based method was introduced for fabricating SnO2 monolayer ordered porous films with size-tunable surface pores on ceramic tubes used for gas sensors. The growth of the spherical pore walls was controlled by two times irradiation of the ultraviolet light using polystyrene microsphere two-dimensional colloidal crystal as a template. The surface pore size of the final obtained porous films was well tuned by changing the second irradiation time rather than replacing the template microspheres. The monolayer ordered porous films on the tubes were directly used, for the first time, as gas sensors. The sensitivity of the sensor depended on the surface pore size and was carefully analyzed by ethanol gas detection. The sensor also exhibited short response-recovery time and long-term stability at lower than 300 °C in practical applications. Therefore, this study opens up a kind of construction method for gas sensors, provides a new strategy for controlling the surface pore size of the monolayer ordered porous film, and introduces a new type of sensitivity-controllable gas sensor.
机译:引入了一种基于光化学的新方法,该方法用于在用于气体传感器的陶瓷管上制造尺寸可调节的表面孔隙的SnO2单层有序多孔膜。使用聚苯乙烯微球二维胶体晶体作为模板,通过两次紫外线照射来控制球形孔壁的生长。通过改变第二次照射时间而不是更换模板微球,可以很好地调节最终获得的多孔膜的表面孔径。管上的单层有序多孔膜首次直接用作气体传感器。传感器的灵敏度取决于表面孔径,并通过乙醇气体检测进行了仔细分析。在实际应用中,该传感器还显示出较短的响应恢复时间和低于300°C的长期稳定性。因此,本研究开辟了一种气体传感器的构造方法,为控制单层有序多孔膜的表面孔径提供了新的策略,并介绍了一种新型的灵敏度可控的气体传感器。

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