Skolariki Thomais A, Chatzimitakos Theodoros G, Sygellou Lamprini, Stalikas Constantine D
Laboratory of Analytical Chemistry, Department of Chemistry, University of Ioannina, 45110 Ioannina, Greece.
Foundation for Research and Technology Hellas/Institute of Chemical Engineering Sciences (FORTH/ICE-HT), Stadiou Str., P.O. Box 1414, 26504 Rio-Patras, Greece.
Nanomaterials (Basel). 2023 May 21;13(10):1689. doi: 10.3390/nano13101689.
4-Nitrophenol (4-NP) has been listed as a priority pollutant and has also been reported as a human urinary metabolite used as a marker to evaluate exposure to certain pesticides. In the work herein, a solvothermal approach is applied to the one-pot synthesis of both hydrophilic and hydrophobic fluorescent carbon nanodots (CNDs), utilizing the halophilic microalgae as a biomass precursor. Both kinds of the produced CNDs showed appreciable optical properties and quantum yields, good photostability and they were capable of probing 4-NP by quenching their fluorescence through the inner filter effect. Interestingly, a prominent 4-NP concentration-dependent redshift of the corresponding emission band of the hydrophilic CNDs was noticed, which was further exploited, for the first time, as an analytical platform. Capitalizing on these properties, analytical methods were developed and applied to a variety of matrixes, such as tap water, treated municipal wastewater and human urine. The method based on the hydrophilic CNDs (λ/λ: 330/420 nm) was linear in the range of 0.80-45.0 μM and showed acceptable recoveries (from 102.2 to 113.7%) with relative standard deviations of 2.1% (intra-day) and 2.8% (inter-day) for the quenching-based detection mode and 2.9% (intra-day) and 3.5% (inter-day) for the redshift one. The method based on the hydrophobic CNDs (λ/λ: 380/465 nm) was linear in the range of 1.4-23.0 μM, with recoveries laying within the range of 98.2-104.5% and relative standard deviations of 3.3% and 4.0% for intra-day and inter-day assays, respectively.
4-硝基苯酚(4-NP)已被列为优先污染物,也被报道为一种人体尿液代谢物,用作评估接触某些农药的标志物。在本文的工作中,采用溶剂热法,以嗜盐微藻为生物质前驱体,一锅法合成了亲水性和疏水性荧光碳纳米点(CNDs)。所制备的两种CNDs均表现出可观的光学性质和量子产率,具有良好的光稳定性,并且能够通过内滤效应淬灭荧光来探测4-NP。有趣的是,亲水性CNDs相应发射带出现了明显的4-NP浓度依赖性红移,首次将其作为一个分析平台加以利用。基于这些性质,开发了分析方法并应用于多种基质,如自来水、处理后的城市污水和人体尿液。基于亲水性CNDs(激发波长/发射波长:330/420 nm)的方法在0.80-45.0 μM范围内呈线性,基于淬灭检测模式的回收率在102.2%至113.7%之间,日内相对标准偏差为2.1%,日间相对标准偏差为2.8%;基于红移检测模式的日内相对标准偏差为2.9%,日间相对标准偏差为3.5%。基于疏水性CNDs(激发波长/发射波长:380/465 nm)的方法在1.4-23.0 μM范围内呈线性,日内和日间测定的回收率分别在98.2%-104.5%范围内,相对标准偏差分别为3.3%和4.0%。