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利用溶剂化离子液体在石英晶体微天平上进行胺类气体分析。

Exploiting Solvate Ionic Liquids for Amine Gas Analysis on a Quartz Crystal Microbalance.

机构信息

Department of Chemistry and Biochemistry, National Chung Cheng University , 168 University Road, Minhsiung, Chiayi 62102 Taiwan, Republic of China.

出版信息

Anal Chem. 2017 May 16;89(10):5186-5192. doi: 10.1021/acs.analchem.7b00857. Epub 2017 Apr 28.

Abstract

We demonstrated in this work the usefulness of solvate ionic liquids SIL 3 and SIL 4 for chemoselective detection of amine gases on a quartz crystal microbalance. This detection of gaseous amines was achieved by nucleophilic aromatic addition reactions with super electrophilic SIL 3 or SIL 4 thin-coated on quartz chips. Starting with inexpensive reagents, functional SIL 3 and SIL 4 could be readily synthesized in two short steps with high isolated yield (81 and 77%, respectively). The QCM platform developed in this work is readily applicable and highly sensitive to low molecular weight amine gases: for propylamine gas at 10 Hz decrease in resonance frequency, the sensitivity of detection using SIL 4 was 5.4 ppb. This simple and convenient assembly of neutral ligands (e.g., 1a and 1b) with Li ion to afford room temperature ionic liquids should be of great importance for a myriad of applications. To the best of our knowledge, no example to date of reports based on nucleophilic aromatic addition reactions demonstrating sensitive amine gas detection in solvate ionic liquids on a QCM has been reported. Furthermore, because of the high color intensity of the Meisenheimer complexes formed, our preliminary result showed that SIL 4 loaded on copier paper can be used not only as a portable amine gas sensor but also as a potential invisible ink that is only revealed by amine vapor.

摘要

在这项工作中,我们展示了溶剂化离子液体 SIL3 和 SIL4 在石英晶体微天平上对胺类气体进行化学选择性检测的有用性。通过与超亲电的 SIL3 或 SIL4 的亲核芳香加成反应,实现了对气态胺的检测,SIL3 或 SIL4 薄涂层涂覆在石英芯片上。从廉价的试剂开始,功能化的 SIL3 和 SIL4 可以通过两步短步骤以高分离产率(分别为 81%和 77%)轻易合成。本工作中开发的 QCM 平台易于应用,对低分子量胺气体高度敏感:对于 10 Hz 的丙胺气体,使用 SIL4 检测的灵敏度为 5.4 ppb。将中性配体(例如 1a 和 1b)与锂离子简单方便地组装成室温离子液体,对于无数应用应该具有重要意义。据我们所知,目前还没有基于亲核芳香加成反应的报告,即在 QCM 上的溶剂化离子液体中进行灵敏的胺气体检测的例子。此外,由于形成的 Meisenheimer 配合物的高颜色强度,我们的初步结果表明,负载在复印机纸上的 SIL4 不仅可用作便携式胺气体传感器,而且可用作潜在的隐形墨水,只有胺蒸气才能显示出来。

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