School of Physics and Astronomy, School of Materials Science and Engineering, Yunnan Key Laboratory for Micro/nano Materials & Technology, Yunnan University, 650091, Kunming, China.
Sci Rep. 2018 Sep 21;8(1):14220. doi: 10.1038/s41598-018-32113-x.
An ultrasensitive methanol gas sensing device based on the quasi-molecular imprinting technology (quasi-MIT) is studied in this work. We applied the sol-gel method (ALS denotes Ag-LaFeO prepared by the sol-gel method) and combustion synthesis (ALC denotes Ag-LaFeO prepared by combustion synthesis) to prepare Ag-LaFeO based sensors. The morphologies and structures of the Ag-LaFeO materials were examined via various detection techniques. The ALSM and ALCM sensor (ALSM and ALCM denotes the devices prepared by coating the ALS and ALC materials with methanol, respectively) fabricated using the sol-gel method and combustion synthesis combined with quasi-MIT exhibit good gas sensing properties to methanol, in contrast with the two devices (ALSW and ALCW denote the devices prepared for coating the ALS and ALC materials with water, respectively) without the use of quasi-MIT. The results show that quasi-MIT introduced the target gas in the fabrication process of the device, playing an important role in the design of the ultrasensitive methanol gas sensor. The sensing response and the optimum working temperature of ALSM and ALCM gas sensor are 52.29 and 155 °C and 34.89 and 155 °C, respectively, for 5 ppm methanol, and the highest response to other gases is 8. The ALSM and ALCM gas sensors reveal good selectivity and response for methanol.
本工作研究了一种基于准分子印迹技术(quasi-MIT)的超高灵敏度甲醇气体传感装置。我们应用溶胶-凝胶法(ALS 表示用溶胶-凝胶法制备的 Ag-LaFeO)和燃烧合成法(ALC 表示用燃烧合成法制备的 Ag-LaFeO)来制备 Ag-LaFeO 基传感器。通过各种检测技术对 Ag-LaFeO 材料的形貌和结构进行了检测。与未使用 quasi-MIT 的两个器件(ALSW 和 ALCW 分别表示用溶胶-凝胶法制备的涂覆 ALS 和 ALC 材料的器件,以及用水涂覆 ALS 和 ALC 材料的器件)相比,采用溶胶-凝胶法和燃烧合成法与 quasi-MIT 相结合制备的 ALSM 和 ALCM 传感器(ALSM 和 ALCM 分别表示用甲醇涂覆 ALS 和 ALC 材料制备的器件)对甲醇具有良好的气敏性能。结果表明,quasi-MIT 在器件的制造过程中引入了目标气体,在设计超高灵敏度甲醇气体传感器方面发挥了重要作用。ALSM 和 ALCM 气体传感器的传感响应和最佳工作温度分别为 5ppm 甲醇时的 52.29 和 155°C,以及 34.89 和 155°C,对其他气体的最高响应为 8。ALSM 和 ALCM 气体传感器对甲醇具有良好的选择性和响应。