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基于智能手机的铜定量测量:通过自由基阳离子形成的荧光开启化学传感器

Smartphone-Based Quantitative Measurement of Cu: Fluorescent Turn-on Chemosensor via Radical Cation Formation.

作者信息

Gil Dongkyun, Choi Boeun, Kim Cheal

机构信息

Department of Fine Chemistry, Seoul National Univ. of Sci. and Tech. (SNUT), Seoul, 01811, Korea.

出版信息

J Fluoresc. 2025 Mar;35(3):1707-1717. doi: 10.1007/s10895-024-03635-7. Epub 2024 Mar 5.

Abstract

We report a unique radical cation formation-based fluorescent chemosensor (E)-N'-(4-(diphenylamino)benzylidene)thiophene-2-carbohydrazide (DBTC) that quantitatively determines Cu based on the RGB model using a smartphone. DBTC exhibited a weak turquoise fluorescence due to fluorescence suppression by amide isomerization. When Cu was added into DBTC, it showed strong light blue fluorescence with a high quantum yield ([Formula: see text] = 0.470). The detection limit of Cu was determined to be 0.40 µM at the concentration range of 0-7.5 µM. In addition, the detection mechanism of DBTC for Cu was demonstrated to be an oxidative cyclization reaction through H NMR titration, ESI-MS analysis, and DFT calculation. Remarkably, DBTC could be applied to the quantitative measurement of Cu using a smartphone and RGB analysis. The detection limit was calculated to be 0.05 µM, which is the lowest detection limit among chemosensors that could detect Cu through smartphone-based fluorescence measurements. Additionally, spike and recovery experiments conducted with different concentrations of Cu showed good recovery values. DBTC exhibited its potential as a chemosensor for determining Cu through the application of a smartphone-based platform capable of real-time monitoring.

摘要

我们报道了一种基于独特的自由基阳离子形成的荧光化学传感器(E)-N'-(4-(二苯胺基)亚苄基)噻吩-2-碳酰肼(DBTC),它使用智能手机基于RGB模型定量测定铜。由于酰胺异构化导致荧光猝灭,DBTC呈现出微弱的蓝绿色荧光。当向DBTC中加入铜时,它会发出具有高量子产率(Φ = 0.470)的强烈浅蓝色荧光。在0-7.5 μM的浓度范围内,铜的检测限被确定为0.40 μM。此外,通过1H NMR滴定、ESI-MS分析和DFT计算表明,DBTC对铜的检测机制是氧化环化反应。值得注意的是,DBTC可通过智能手机和RGB分析应用于铜的定量测量。计算得出的检测限为0.05 μM,这是通过基于智能手机的荧光测量检测铜的化学传感器中最低的检测限。此外,对不同浓度的铜进行加标回收实验显示出良好的回收率。通过应用能够实时监测的基于智能手机的平台,DBTC展现出作为测定铜的化学传感器的潜力。

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