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Near-Room-Temperature Ethanol Detection Using Ag-Loaded Mesoporous Carbon Nitrides

机译:用载银的中孔碳氮化物检测近室温乙醇

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Development of room-temperature gas sensors is a much sought-after aspect that has fostered research in realizing new two-dimensional materials with high surface area for rapid response and low-ppm detection of volatile organic compounds (VOCs). Herein, a fast-response and low-ppm ethanol gas sensor operating at near room temperature has been fabricated successfully by utilizing cubic mesoporous graphitic carbon nitride (g-CN, commonly known as g-C_(3)N_(4)), synthesized through template inversion of mesoporous silica, KIT-6. Upon exposure to 50 ppm ethanol at 250 °C, the optimized Ag/g-CN showed a significantly higher response (R _(a)/R _(g) = 49.2), fast response (11.5 s), and full recovery within 7 s in air. Results of sensing tests conducted at 40 °C show that the sensor exhibits not only a highly selective response to 50 ppm (R _(a)/R _(g) = 1.3) and 100 ppm (R _(a)/R _(g) = 3.2) of ethanol gas but also highly reversible and rapid response and recovery along with long-term stability. This outstanding response is due to its easily accessible three-dimensional mesoporous structure with higher surface area and unique planar morphology of Ag/g-CN. This study could provide new avenues for the design of next-generation room-temperature VOC sensors for effective and efficient monitoring of alarming concern over indoor environment.
机译:室温气体传感器的开发是一个广受欢迎的方面,它促进了对实现具有高表面积的新型二维材料的研究,以实现快速响应和挥发性有机化合物(VOC)的低ppm检测。本文中,通过利用合成的立方中孔石墨氮化碳(g-CN,通常称为g-C_(3)N_(4))成功制造了在室温附近工作的快速响应和低ppm乙醇气体传感器。通过介孔二氧化硅KIT-6的模板转化。在250°C下暴露于50 ppm乙醇时,优化后的Ag / g-CN显示出明显更高的响应(i R _(a)/ i R _(g)= 49.2),快速响应(11.5 s ),并在空气中7秒钟内完全恢复。在40°C下进行的感测测试结果表明,传感器不仅对50 ppm(i R _(a)/ i R _(g)= 1.3)和100 ppm( R _(a)/ R _(g)= 3.2)的乙醇气体,还具有高度可逆和快速的响应和恢复能力以及长期稳定性。这种出色的响应归因于其易于访问的具有较高表面积的三维介孔结构和独特的Ag / g-CN平面形态。这项研究可以为设计下一代室温VOC传感器提供新途径,以有效,高效地监测室内环境的警报问题。

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