Goodwin Danielle M, Carta Mariolino, Ali Muhammad Munem, Gillard Daniel, Guy Owen J
Centre for Integrative Semiconductor Materials (CISM), Faculty of Science and Engineering, Swansea University─Bay Campus, Fabian Way, Swansea SA1 8EN, U.K.
Department of Chemistry, College of Science, Swansea University─Singleton Campus, Swansea SA2 8PP, U.K.
ACS Sens. 2025 Feb 28;10(2):1378-1386. doi: 10.1021/acssensors.4c03291. Epub 2025 Feb 17.
In this study, we report on the fabrication and evaluation of gas sensing performance for 3 × 3 graphene pixel array sensors coated with polymers of intrinsic microporosity (PIM-1 and PIM-EA-TB) and Matrimid, a commercial polyimide, for the detection of nitrogen dioxide (NO). The polymer films, with thicknesses of only 9-11 nm, significantly enhanced the gas sensing performance, demonstrating responses as high as -25.7% compared to a bare graphene response of -10.8%. The gas sensing performance was evaluated in real-time by exposing the sensors to NO concentrations from 1 to 50 ppm, along with selectivity tests using ammonia (NH), nitric oxide (NO), methane (CH), and carbon dioxide (CO). In addition to their high sensitivity, the sensors exhibited reduced response times by 56 s. They also demonstrated high selectivity for NO, with minimal cross-sensitivity to other gases. Furthermore, the polymer membranes exhibited rapid recovery times (114-153 s) and limits of detection in the low parts per billion range, with PIM-EA-TB achieving a detection limit of 0.7 ppb. These features highlight their potential as promising candidates for real-time environmental monitoring of toxic gases, showcasing the potential use of PIMs to enhance the sensitivity and selectivity of graphene-based gas sensors and providing a foundation for further development of cost-effective and reliable NO detection systems.
在本研究中,我们报告了用于检测二氧化氮(NO)的3×3石墨烯像素阵列传感器的制备及其气敏性能评估。这些传感器涂覆了具有固有微孔性的聚合物(PIM-1和PIM-EA-TB)以及商用聚酰亚胺Matrimid。聚合物薄膜厚度仅为9 - 11纳米,显著增强了气敏性能,与裸石墨烯-10.8%的响应相比,其响应高达-25.7%。通过将传感器暴露于1至50 ppm的NO浓度下进行实时气敏性能评估,并使用氨(NH₃)、一氧化氮(NO)、甲烷(CH₄)和二氧化碳(CO₂)进行选择性测试。除了具有高灵敏度外,这些传感器的响应时间缩短了56秒。它们对NO还表现出高选择性,对其他气体的交叉敏感性极小。此外,聚合物膜表现出快速恢复时间(114 - 153秒)以及低至十亿分之几范围内的检测限,其中PIM-EA-TB实现了0.7 ppb的检测限。这些特性突出了它们作为有毒气体实时环境监测的有前景候选者的潜力,展示了使用固有微孔聚合物增强基于石墨烯的气体传感器的灵敏度和选择性的潜力,并为进一步开发经济高效且可靠的NO检测系统奠定了基础。