School of Studies in Physics, Jiwaji University, Gwalior, India.
Vikrant University, Gwalior, India.
Sci Rep. 2023 May 18;13(1):8074. doi: 10.1038/s41598-023-32151-0.
In the present work, we have developed a polymer based gas sensor. The polymer nanocomposites are synthesized by the chemical oxidative polymerization of aniline with ammonium persulfate and sulfuric acid. The fabricated sensor is able to achieve a sensing response of 4.56% for PANI/MMT-rGO at 2 ppm of hydrogen cyanide (HCN) gas. The sensitivity of the sensors PANI/MMT and PANI/MMT-rGO are 0.89 ppm and 1.1174 ppm respectively. The increase in the sensitivity of the sensor may be due to an increase in the surface area provided by MMT and rGO which provided more binding sites for the HCN gas. The sensing response of the sensor increases as the concentration of the gas exposed increases but saturates after 10 ppm. The sensor recovers automatically. The sensor is stable and can work for 8 months.
在本工作中,我们开发了一种基于聚合物的气体传感器。聚合物纳米复合材料是通过苯胺与过硫酸铵和硫酸的化学氧化聚合合成的。所制备的传感器能够在 2 ppm 的氢氰酸 (HCN) 气体下实现 4.56%的 PANI/MMT-rGO 传感响应。传感器 PANI/MMT 和 PANI/MMT-rGO 的灵敏度分别为 0.89 ppm 和 1.1174 ppm。传感器灵敏度的增加可能是由于 MMT 和 rGO 提供的表面积增加,为 HCN 气体提供了更多的结合位点。随着暴露气体浓度的增加,传感器的传感响应增加,但在 10 ppm 后饱和。传感器会自动恢复。传感器稳定,可工作 8 个月。