Çubuk Soner, Demirtaş Tutku, Nallbani Belma Gjergjizi, Kahraman Memet Vezir
Department of Chemistry, Faculty of Sciences, Marmara University, 34722, Istanbul, Türkiye.
Faculty of Pharmacy, UBT - Higher Education Institution, Lagjia Kalabria, 10000, Pristina, Republic of Kosovo.
J Fluoresc. 2025 Jul 1. doi: 10.1007/s10895-025-04439-z.
In this research, a polymeric fluorescence sensor was developed to detect Ni(II) ions. A polymeric membrane was prepared, and its structural and morphological properties were analyzed through FTIR and SEM. The fluorescence properties of the sensor and the optimal conditions for Ni(II) ion detection were investigated. The sensor's excitation and emission wavelengths were identified as 390 nm and 530 nm, respectively, with a reduction in fluorescence intensity observed in the presence of Ni(II) ions. Key factors affecting fluorescence intensity, such as pH, response time, and potential interference from foreign ions, were extensively studied. Optimal conditions were determined to be at pH 5.0 and 20 s. The method demonstrated a linear detection range of 1.70 × 10⁻⁸-3.41 × 10⁻⁷ mol L and a detection limit of 4.81 × 10⁻⁹ mol L. This method has been successfully applied for the selective, sensitive, and rapid quantification of Ni(II) ions in wastewater, blood serum, and tap water. It is a method with the potential to offer significant advantages over existing literature methods, including high sensitivity, selectivity, low cost, and an environmentally friendly analytical approach.
在本研究中,开发了一种聚合物荧光传感器用于检测镍(II)离子。制备了聚合物膜,并通过傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)对其结构和形态特性进行了分析。研究了该传感器的荧光特性以及检测镍(II)离子的最佳条件。该传感器的激发波长和发射波长分别确定为390 nm和530 nm,在镍(II)离子存在下观察到荧光强度降低。对影响荧光强度的关键因素,如pH值、响应时间和外来离子的潜在干扰进行了广泛研究。确定最佳条件为pH 5.0和20 s。该方法的线性检测范围为1.70×10⁻⁸ - 3.41×10⁻⁷ mol/L,检测限为4.81×10⁻⁹ mol/L。该方法已成功应用于废水、血清和自来水中镍(II)离子的选择性、灵敏和快速定量分析。它是一种相对于现有文献方法具有显著优势的方法,包括高灵敏度、选择性、低成本和环境友好的分析方法。