Key Laboratory of Applied Surface and Colloid Chemistry (Ministry of Education), School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710119, China.
Anal Chem. 2021 Dec 7;93(48):16051-16058. doi: 10.1021/acs.analchem.1c03641. Epub 2021 Nov 22.
Non-methane hydrocarbons (NMHCs) can serve as precursors of ozone and photochemical smog, and hence their highly efficient detection is of great importance for air quality monitoring. Here, we synthesized a new fluorescent perylene bisimide (PBI)-cored metallacycle complex through coordination-driven self-assembly and used it for the production of a fluorescent film sensor. The unique rectangular structure of the developed fluorophore endows the sensor with enhanced sensing performance and discriminability to -alkanes (C). Specifically, the experimental detection limits for -pentane, -hexane, and -decane are 39, 7, and 1.4 mg/m, respectively, and the corresponding linear ranges are from 39 to 2546, 7 to 1745, and 1.4 to 85 mg/m, respectively. Moreover, the sensing is fully reversible. In tandem with a gas chromatographic separation system, the film sensor showed comparable detection ability for the -alkanes with a commercial flame ionization detector (FID), while the film sensor needs no hydrogen; it occupies a much smaller size (30 × 30 × 44 mm) and consumes less energy (0.215 W). Further studies demonstrated that the developed sensor can be used for on-site and real-time quantification of NHMCs, laying the foundation for developing into a portable detector.
非甲烷烃(NMHCs)可以作为臭氧和光化学烟雾的前体,因此,对其进行高效检测对于空气质量监测至关重要。在这里,我们通过配位驱动自组装合成了一种新型荧光苝二酰亚胺(PBI)核金属环配合物,并将其用于制备荧光薄膜传感器。所开发的荧光团的独特矩形结构赋予了传感器增强的传感性能和对 -烷烃(C)的区分能力。具体而言,对于 -戊烷、-己烷和 -癸烷的实验检测限分别为 39、7 和 1.4mg/m,相应的线性范围分别为 39 至 2546、7 至 1745 和 1.4 至 85mg/m。此外,传感是完全可逆的。与气相色谱分离系统相结合,该薄膜传感器对具有商业火焰离子化检测器(FID)的 -烷烃具有相当的检测能力,而薄膜传感器不需要氢气;它的尺寸小得多(30×30×44mm),能耗也更低(0.215W)。进一步的研究表明,所开发的传感器可用于现场和实时定量测定 NHMCs,为开发成便携式探测器奠定了基础。