4.5 Article

QCM-Based HCl Gas Detection on Dimethylamine-Functionalized Crosslinked Copolymer Films

期刊

CHEMOSENSORS
卷 10, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/chemosensors10020070

关键词

toxic gas; 2-dimethylaminoethyl methacrylate; quartz crystal microbalance

资金

  1. Ministry of Trade, Industry and Energy, Republic of Korea [N0002310]

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In this work, the sensing behaviors and mechanisms of two crosslinked copolymers were compared for their ability to detect HCl gas. It was found that the C2-DMA film, prepared by photopolymerization on quartz crystal electrodes, exhibited higher binding capacity, sensitivity, and selectivity compared to the C0-DMA film. Therefore, the C2-DMA film-coated QC electrode could be used as a low-cost and easily prepared HCl gas sensor.
In this work, sensing behaviors and mechanisms of two crosslinked copolymers with dimethylamine and dimethylamide functional groups were compared and investigated for their ability to detect hydrogen chloride (HCl) gas. The crosslinked copolymer films were photopolymerized on quartz crystal electrodes using a micro-contact printing technique. The gas sensing behaviors were analyzed by measuring resonant frequency (Delta f) of quartz crystal microbalance (QCM). The HCl binding capacity of photopolymerized films, with a mass between 4.6 and 5.9 mu g, was optimized. Under optimized film mass conditions, the poly(2-dimethylaminoethyl methacrylate-co-ethylene glycol dimethacrylate) (DMAEMA-co-EGDMA), poly(DMAEMA-co-EGDMA), film, C2-DMA, showed a 13.9-fold higher binding capacity than the poly(N,N-dimethylacrylamide-co-ethylene glycol dimethacrylate, poly(DMAA-co-EGDMA), film, C0-DMA, during HCl gas adsorption. HCl gas was effectively adsorbed on the C2-DMA film because of the formation of tertiary amine salts through protonation and strong ionic bonding. Furthermore, the C2-DMA film exhibited excellent sensitivity, of 2.51 (ng/mu g) (1/ppm), and selectivity coefficient (k* = 12.6 for formaldehyde and 13.5 for hydrogen fluoride) compared to the C0-DMA film. According to the experimental results, and due to its high functionality and stability, the C2-DMA film-coated QC electrode could be used as an HCl gas sensor, with low-cost and simple preparation, in future endeavors.

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