首页> 外文期刊>Journal of Hazardous Materials >pH-mediated reversible fluorescence nanoswitch based on inner filter effect induced fluorescence quenching for selective and visual detection of 4- nitrophenol
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pH-mediated reversible fluorescence nanoswitch based on inner filter effect induced fluorescence quenching for selective and visual detection of 4- nitrophenol

机译:基于内滤效应的pH介导的可逆荧光纳米开关诱导的荧光猝灭,用于选择性和视觉检测4-硝基苯酚

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Being a common hazardous waste, 4-nitrophenol (4-NP) has caused a serious threat to humans and environment. Therefore, rapid and selective detection of 4-NP, especially using a simple and portable instrument, is highly desired for human health and environmental monitoring. Herein, we develop a novel pH-mediated reversible fluorescence nanoswitch for selectively detecting 4-NP by using water-soluble fluorescent polymer carbon dots (PCDs) as a probe. The fluorescence of PCDs can be quenched by 4-NP via inner filter effect (IFE) because its excitation spectrum well overlaps with the absorption spectrum of 4-NP under alkaline condition. However, an obvious blue shift of the absorption peak of 4-NP occurs under acidic condition, causing the fluorescence recovery of PCDs due to the disappearance of IFE. On the basis of this principle, a pH-mediated reversible fluorescence nanoswitch was constructed and a broad linear range was obtained from 0.5 to 60 mu M with a detection limit of 0.26 mu M for 4-NP. Furthermore, this approach was successfully applied to detect 4-NP in real water samples and a portable polyamide film-based sensor was developed for visual detection of 4-NP, which offers a promising platform for the detection of 4-NP in on-site and resource-poor settings.
机译:4-硝基苯酚(4-NP)是一种常见的危险废物,已经对人类和环境造成了严重威胁。因此,对于人类健康和环境监测,特别是使用简单且便携式的仪器,快速且选择性地检测4-NP是非常需要的。本文中,我们开发了一种新型的pH介导的可逆荧光纳米开关,用于通过使用水溶性荧光聚合物碳点(PCD)作为探针选择性检测4-NP。 PCD的荧光可以通过内滤效应(IFE)被4-NP猝灭,因为它的激发光谱与4-NP在碱性条件下的吸收光谱很好地重叠。然而,在酸性条件下,4-NP的吸收峰发生了明显的蓝移,由于IFE的消失,导致了PCD的荧光恢复。基于此原理,构建了pH介导的可逆荧光纳米开关,并获得了0.5至60μM的宽线性范围,对4-NP的检测限为0.26μM。此外,该方法已成功应用于实际水样中的4-NP检测,并开发了一种基于聚酰胺薄膜的便携式传感器,用于可视化检测4-NP,这为现场检测4-NP提供了有希望的平台和资源匮乏的设置。

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