Yang Shilong, Jiang Weina, Tang Ying, Xu Li, Gao Buhong, Xu Haijun
Advanced Analysis and Testing Center, Nanjing Forestry University Nanjing 210037 China.
Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University 210037 China
RSC Adv. 2018 Nov 13;8(66):37828-37834. doi: 10.1039/c8ra06754f. eCollection 2018 Nov 7.
Environmentally friendly probe materials for detecting copper ions were studied in this research. Fluorescent emission of quercetin (Q) was observed in the buffer solution (pH = 7.40), and (2-hydroxypropyl)-β-cyclodextrin (CD) could enhance the fluorescence intensity of Q. The UV/Vis spectrum showed that the Q-CD system was formed. After adding copper ions into the Q-CD system, the fluorescent emission intensity of Q-CD system generated quenching, and other metal ions could not bring change, which meant the Q-CD system showed good selectivity to copper ions. The fluorescence titration spectra showed that the concentration of copper ions was inversely proportional to fluorescence intensity, and gave a good linear change in fluorescence emission intensity in response to the concentration of copper ions ranging from 5.0 × 10 to 8.3 × 10 mol L. The calibration curve of the relationship between the intensity and copper ions concentration was = -9.24 + 844.51 ( = 0.997). The detection limit of copper ions was measured to be 2.3 × 10 mol L. The probable mechanism was studied by UV/Vis spectrum and Job's plot method. The results indicated that Q-CD-Cu(ii) complex was formed and intramolecular charge transfer (ICT) took place. At last, the probe was successfully applied for determination of copper ions in water bodies, vegetables and fruits with good recovery. The study showed that Q-CD system could detect copper ions as a fluorescent probe with high selectivity, sensitivity and larger linearity range.
本研究对用于检测铜离子的环境友好型探针材料进行了研究。在缓冲溶液(pH = 7.40)中观察到槲皮素(Q)的荧光发射,且(2-羟丙基)-β-环糊精(CD)可增强Q的荧光强度。紫外可见光谱表明形成了Q-CD体系。向Q-CD体系中加入铜离子后,Q-CD体系的荧光发射强度发生猝灭,而其他金属离子不会带来变化,这意味着Q-CD体系对铜离子具有良好的选择性。荧光滴定光谱表明,铜离子浓度与荧光强度成反比,在5.0×10至8.3×10 mol/L的铜离子浓度范围内,荧光发射强度呈现良好的线性变化。强度与铜离子浓度关系的校准曲线为 = -9.24 + 844.51( = 0.997)。测得铜离子的检测限为2.3×10 mol/L。通过紫外可见光谱和Job曲线法研究了可能的机理。结果表明形成了Q-CD-Cu(ii)配合物并发生了分子内电荷转移(ICT)。最后,该探针成功应用于水体、蔬菜和水果中铜离子的测定,回收率良好。研究表明,Q-CD体系可作为一种荧光探针检测铜离子,具有高选择性、高灵敏度和较大的线性范围。