Zhang Huaiyi, Wang Guang
School of Life Sciences, Zhuhai College of Science and Technology, Zhuhai, 519080, P.R. China.
Faculty of Chemistry, Northeast Normal University, Changchun, 130024, PR China.
J Fluoresc. 2025 May 23. doi: 10.1007/s10895-025-04377-w.
Conjugated micro/mesoporous polymers (CMPs) have emerged as versatile platforms for designing advanced functional materials. In this study, a novel benzoxazole-functionalized CMP, TFPA-DBD, was rationally synthesized, featuring a spherical morphology, well-defined mesoporous structure and robust thermal/chemical stability. When dispersed in DMF, TFPA-DBD exhibits a selective "turn-off" fluorescence response toward Fe and Fe ions, achieving low detection limits (LOD) of 0.56 µM and 0.72 µM, respectively. Importantly, TFPA-DBD demonstrates rapid response, high selectivity and strong anti-interference capability during sensing process. The fluorescence quenching mechanism originates from synergistic effects between Fe/Fe ions and the nitrogen/oxygen sites within the benzoxazole units, and combines with absorption competition quenching (ACQ) sensing mechanism. Additionally, TFPA-DBD enables the straightforward visual identification of Fe and Fe ions using test paper mode, detectable by the naked eye. Practical applicability was validated through reliable recovery performance in real water samples, highlighting its potential for environmental monitoring applications. This work expands the library of functional CMPs and underscores their utility in developing high-performance sensing systems for transition metal ion detection.
共轭微/介孔聚合物(CMPs)已成为设计先进功能材料的通用平台。在本研究中,一种新型的苯并恶唑功能化CMP,即TFPA-DBD,被合理合成,具有球形形态、明确的介孔结构和强大的热/化学稳定性。当分散在N,N-二甲基甲酰胺(DMF)中时,TFPA-DBD对Fe³⁺和Fe²⁺离子表现出选择性的“关断”荧光响应,分别实现了0.56 μM和0.72 μM的低检测限(LOD)。重要的是,TFPA-DBD在传感过程中表现出快速响应、高选择性和强抗干扰能力。荧光猝灭机制源于Fe³⁺/Fe²⁺离子与苯并恶唑单元内的氮/氧位点之间的协同效应,并与吸收竞争猝灭(ACQ)传感机制相结合。此外,TFPA-DBD能够使用试纸模式直接目视识别Fe³⁺和Fe²⁺离子,肉眼即可检测。通过在实际水样中的可靠回收性能验证了其实际适用性,突出了其在环境监测应用中的潜力。这项工作扩展了功能性CMPs的库,并强调了它们在开发用于过渡金属离子检测的高性能传感系统中的效用。