Singh Raj, Swami Suman, Bhogal Shikha
Department of Chemistry, University Institute of Sciences, Chandigarh University Mohali-140413 Punjab India
Virginia Tech-TIET Center of Excellence in Emerging Materials, Thapar Institute of Engineering & Technology Patiala - 147004 India
RSC Adv. 2025 Sep 17;15(41):34094-34104. doi: 10.1039/d5ra04745e.
The fluoride anion plays a vital role in human health by preventing dental caries and enhancing bone strength. However, excessive intake beyond the permissible limit poses a serious health risk. This underscores the critical need for accurate and routine monitoring of fluoride levels in water supplies. Traditional methods of fluoride detection are associated with many limitations and high hydration enthalpy of fluoride (Δ = -504 kJ mol), which additionally makes it challenging to design effective aqueous-phase fluorescent probes for fluoride. In this study, we report chitosan-functionalized N-doped carbon dots (N-CDs@C) as an environmentally friendly, cost-effective, and fluorescent probe for the selective and sensitive detection of fluoride ions in aqueous media. The interaction between N-CDs@C and fluoride likely occurs hydrogen bonding and electrostatic interaction, which results in a fluorescence "turn-on" response for fluoride. The N-CDs@C probe exhibited a strong emission enhancement at 455 nm upon fluoride binding, with excellent selectivity, anti-interference performance, and a detection limit as low as 0.01 μM within a linear range of 0.12-0.50 μM. The practical utility of this sensor was demonstrated through successful application in real samples, including toothpaste and tap water with excellent recoveries ranging from 98.67-99.27% (RSD <2%).
氟离子通过预防龋齿和增强骨骼强度在人体健康中发挥着至关重要的作用。然而,摄入量超过允许限度会带来严重的健康风险。这突出表明迫切需要对供水系统中的氟含量进行准确和常规监测。传统的氟化物检测方法存在许多局限性,而且氟化物的水合焓很高(Δ = -504 kJ mol),这使得设计有效的水相氟离子荧光探针也具有挑战性。在本研究中,我们报道了壳聚糖功能化的氮掺杂碳点(N-CDs@C)作为一种环境友好、经济高效的荧光探针,用于在水介质中选择性和灵敏地检测氟离子。N-CDs@C与氟离子之间的相互作用可能通过氢键和静电相互作用发生,这导致对氟离子产生荧光“开启”响应。N-CDs@C探针在与氟离子结合后在455 nm处发射增强强烈,具有出色的选择性、抗干扰性能,在0.12 - 0.50 μM的线性范围内检测限低至0.01 μM。通过在实际样品(包括牙膏和自来水)中的成功应用证明了该传感器的实用性,回收率极佳,范围为98.67 - 99.27%(相对标准偏差<2%)。