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基于苝二酰亚胺核金属环配合物的荧光膜传感器实现高性能 NMHC 检测。

High-Performance NMHC Detection Enabled by a Perylene Bisimide-Cored Metallacycle Complex-Based Fluorescent Film Sensor.

机构信息

Key Laboratory of Applied Surface and Colloid Chemistry (Ministry of Education), School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710119, China.

出版信息

Anal Chem. 2021 Dec 7;93(48):16051-16058. doi: 10.1021/acs.analchem.1c03641. Epub 2021 Nov 22.

Abstract

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.

摘要

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。

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