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有序二维共价有机框架集成到固态纳流道中用于超快和灵敏检测汞。

Integrating Ordered Two-Dimensional Covalent Organic Frameworks to Solid-State Nanofluidic Channels for Ultrafast and Sensitive Detection of Mercury.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

International Joint Laboratory on Food Safety, Jiangnan University, Wuxi 214122, China.

出版信息

Anal Chem. 2022 Jun 14;94(23):8533-8538. doi: 10.1021/acs.analchem.2c01595. Epub 2022 Jun 2.

Abstract

Grafting specific recognition moieties onto solid-state nanofluidic channels is a promising way for selective and sensitive sensing of analytes. However, the time-consuming interaction between recognition moieties and analytes is the main hindrance to the application of nanofluidic channel-based sensors in rapid detection. Here, we show the integration of ordered two-dimensional covalent organic frameworks (2D COFs) to solid-state nanofluidic channels to achieve rapid, selective, and sensitive detection of contaminants. As a proof of concept, a thiourea-linked 2D COF (JNU-3) as the recognition unit is covalently bonded on the stable artificial anodic aluminum oxide nanochannels (AAO) to fabricate a JNU-3@AAO-based nanofluidic sensor. The rapid and selective interaction of Hg(II) with the highly ordered channels of JNU-3 allows the JNU-3@AAO-based nanofluidic sensor to realize ultrafast and precise determination of Hg(II) (90 s) with a low limit of detection (3.28 fg mL), wide linear range (0.01-100 pg mL), and good precision (relative standard deviation of 3.8% for 11 replicate determination of 10 pg mL). The developed method was successfully applied to the determination of mercury in a certified reference material A072301c (rice powder), real water, and rice samples with recoveries of 90.4-99.8%. This work reveals the great potential of 2D COFs-modified solid-state nanofluidic channels as a sensor for the rapid and precise detection of contaminants in complicated samples.

摘要

将特定的识别部分嫁接到固态纳流通道是一种用于选择性和灵敏检测分析物的有前途的方法。然而,识别部分与分析物之间的耗时相互作用是纳米流通道基传感器在快速检测中应用的主要障碍。在这里,我们展示了有序二维共价有机框架(2D COFs)与固态纳流通道的集成,以实现对污染物的快速、选择性和灵敏检测。作为概念验证,将作为识别单元的硫脲连接的二维 COF(JNU-3)共价键合到稳定的人工阳极氧化铝纳米通道(AAO)上,以制造基于 JNU-3@AAO 的纳流传感器。Hg(II)与 JNU-3 的高度有序通道的快速和选择性相互作用使基于 JNU-3@AAO 的纳流传感器能够实现对 Hg(II)的超快和精确测定(90 s),具有低检测限(3.28 fg mL)、宽线性范围(0.01-100 pg mL)和良好的精度(10 pg mL 时 11 次重复测定的相对标准偏差为 3.8%)。该方法成功应用于测定认证参考物质 A072301c(米粉)、实际水样和大米样品中的汞,回收率为 90.4-99.8%。这项工作揭示了 2D COFs 修饰的固态纳流通道作为传感器在复杂样品中快速精确检测污染物的巨大潜力。

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