El-Reash Y G Abou, El-Awady Osama, Algethami Faisal K, Awad Fathi S
Department of Chemistry, Faculty of Science, Imam Mohammad Ibn Saud Islamic University, P. O. Box, 90950, Riyadh 11623, Saudi Arabia.
Chemistry Department, Faculty of Science, Mansoura University, 23768, Mansoura, Egypt.
Anal Methods. 2024 Aug 1;16(30):5191-5201. doi: 10.1039/d4ay00806e.
The selective and sensitive detection of Al(III) is critically important for human health since the level of Al(III) is an indicator of many diseases in humans. Herein, we developed a simple and sensitive fluorescent sensor for the detection of Al(III) in an aqueous solution based on the fluorescence of hydroxyl-functionalized graphitic carbon nitride nanosheets (HO/g-CN). OH/g-CN nanosheets were synthesized the thermal pyrolysis of 1,3,5-triazine-2,4,6-triamine (as raw material) at 550 °C for 2 hours, followed by thermal alkali treatment at 730 °C for 2 min. The fluorescence of HO/g-CN at 377 nm (at 290 nm excitation) can be quenched by Al(III) effectively and selectively, and the linear relationship between the concentration of Al(III) and fluorescence intensity is in the range of 1.85-14.82 μM with a detection limit of 0.272 μM. The fluorescence turn-off effect of the Al(III) ion on the prepared HO/g-CN nanosheets could be attributed to the presence of oxygen- and nitrogen-containing functional groups on the surface of HO/g-CN that have chelating interactions with Al(III), leading to quenching. The surface functional groups of OH/g-CN were confirmed using different characterization techniques (FTIR, EDX, and XPS). Moreover, the prepared HO/g-CN exhibited remarkable long-term fluorescence stability in water (>30 days) and minimal toxicity. Importantly, a prepared novel fluorescent sensor (HO/g-CN) was successfully applied for the detection and determination of Al(III) in commercially available crab (Brachyura) samples.
铝(III)的选择性和灵敏检测对人类健康至关重要,因为铝(III)的含量是人类多种疾病的一个指标。在此,我们基于羟基官能化的石墨相氮化碳纳米片(HO/g-CN)的荧光,开发了一种用于检测水溶液中铝(III)的简单且灵敏的荧光传感器。OH/g-CN纳米片通过将1,3,5-三嗪-2,4,6-三胺(作为原料)在550℃热解2小时,随后在730℃进行2分钟的热碱处理来合成。HO/g-CN在377nm(290nm激发)处的荧光可被铝(III)有效且选择性地猝灭,铝(III)浓度与荧光强度之间的线性关系在1.85 - 14.82μM范围内,检测限为0.272μM。铝(III)离子对制备的HO/g-CN纳米片的荧光猝灭效应可归因于HO/g-CN表面存在与铝(III)具有螯合相互作用的含氧和含氮官能团,从而导致猝灭。使用不同的表征技术(FTIR、EDX和XPS)对OH/g-CN的表面官能团进行了确认。此外,制备的HO/g-CN在水中表现出显著的长期荧光稳定性(>30天)且毒性极小。重要的是,所制备的新型荧光传感器(HO/g-CN)成功应用于市售螃蟹(短尾类)样品中铝(III)的检测和测定。