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通过双发射基态和激发态电荷转移态对叔胺和阿片类药物进行快速荧光传感

Rapid Fluorochromic Sensing of Tertiary Amines and Opioids via Dual-Emissive Ground and Excited Charge-Transfer States.

作者信息

Cheng Aoyuan, Gu Xuewen, Yang Chengze, Liu Mei, Zhang Baicheng, Liu Hongping, Chen Xiaoyu, Feng Airong, Smith Pieter E S, Jiang Jun, Luo Yi, Huang Wenhuan, Zhang Guoqing

机构信息

Hefei National Laboratory for Physical Science at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, China.

Yunnan Key Laboratory of Intelligent Drug Control, Yunnan Police College, Kunming, Yunnan 650223, China.

出版信息

J Am Chem Soc. 2025 Apr 23;147(16):13512-13521. doi: 10.1021/jacs.5c00425. Epub 2025 Apr 14.

Abstract

The recognition and differentiation of organic amines are crucial for applications in drug analysis, food spoilage, biomedical assays, and clinical diagnostics. Existing luminescence-based recognition methods for amines predominantly rely on fluorescence quenching, limiting the scope of sensitive and selective detection. Here, we present a fluorochromic approach for rapidly distinguishing different organic amines based on their unique excited-state and ground-state interactions with a naphthalimide derivative under ultraviolet light. Our findings reveal that the photoluminescence quantum yield and emission color are significantly influenced by the substituent group and the molecular flexibility of the amine. Specifically, primary amines, together with other common lone-pair donors, such as alcohol, ether, thiol, thioether, and phosphine, did not exhibit photoluminescence changes, while secondary amines exhibited only weak emission. For tertiary amines, however, bright green photoluminescence activation was rapidly produced for molecules containing at least one methyl group; red-shifted yellow emission was observed for ones with bulkier side groups other than methyl; and for conformationally locked bicycloamines, no emission was observed. In addition, this fluorochromic process of the naphthalimide derivative not only depends on tertiary amine substituent groups but also shows distinctly different ground- and excited-state photoluminescence dynamics in time-resolved spectroscopy. Based on these differences, a qualitative method is developed for visual recognition of natural and synthetic opioids, including heroin, fentanyl, and metonitazene, which is more facile and rapid compared to current methods such as the Marquis reagent kit, and could facilitate onsite testing, real-time monitoring, and streamlined workflows in both laboratory and field settings.

摘要

有机胺的识别和区分对于药物分析、食品变质、生物医学检测及临床诊断等应用至关重要。现有的基于发光的胺类识别方法主要依赖荧光猝灭,限制了灵敏且选择性检测的范围。在此,我们提出一种荧光变色方法,用于在紫外光下基于不同有机胺与萘二甲酰亚胺衍生物独特的激发态和基态相互作用快速区分它们。我们的研究结果表明,光致发光量子产率和发射颜色受胺的取代基和分子柔韧性显著影响。具体而言,伯胺与其他常见的孤对电子供体,如醇、醚、硫醇、硫醚和膦,未表现出光致发光变化,而仲胺仅表现出微弱发射。然而,对于叔胺,含有至少一个甲基的分子会迅速产生亮绿色光致发光激活;对于具有比甲基更大侧基的分子,观察到红移的黄色发射;而对于构象锁定的双环胺,则未观察到发射。此外,萘二甲酰亚胺衍生物的这种荧光变色过程不仅取决于叔胺取代基,还在时间分辨光谱中显示出明显不同的基态和激发态光致发光动力学。基于这些差异,开发了一种定性方法用于视觉识别天然和合成阿片类药物,包括海洛因、芬太尼和美托咪定,与当前方法如 Marquis 试剂试剂盒相比,该方法更简便快速,可促进实验室和现场环境中的现场检测、实时监测及简化工作流程。

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