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Ultrasensitive Optical Chemosensor for Cu(II) Detection

机译:用于Cu(II)检测的超敏感光学化学传感器

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Herein, the main objective of this research is to design and synthesize a novel optical chemosensor, 2,6-Bis(4-dimethylaminophenyl)-4-(dicyanomethylene)-cyclohexane-1,1-dicarbo-nitrile (BDC), for detection of one of the most significant metal ions Cu(II). This novel fluorescent chemosensor exhibits unique optical properties with large Stokes shift (about 170 nm) approximately. The fluorescence and UV–vis absorption performance among the BDC probe and Cu(II) ions were examined in 1:9 (v/v) methanol–HEPES buffer (pH = 7.2) solution. Also, BDC displays high selectivity for Cu(II) concerning other cations. Moreover, this probe provides high selectivity and sensitivity based on their fluorescence properties and recognition abilities within a detection limit of the Cu(II) contents (LOD 2.3 x 10?7 M). The suggested mechanism of BDC sensor is attributed to the chelation process with Cu(II), to establish a 1:1 metal-ligand ratio complex with a binding constant (Kbind = 7.16 x 104 M?1). The detection process is accompanied by quenching the main emission peak of the BDC at 571 nm. All the experimental data were collected to investigate the effects of several important parameters such as reversibility and the concentration limits. Besides, we study the interference of various metal ions on selectivity and detection capacity of this significant Cu (II) ion. This novel chemosensor shows ultrasensitive, fast tracing of Cu(II) in the physiological pH range (pH 7.2) and therefore may propose a novel promising method for the investigation of the biological functions of Cu(II) in living cells.
机译:在此,本研究的主要目的是设计和合成新型光学化学传感器,2,6-双(4-二甲基氨基苯基)-4-(二氰基甲基) - 环己烷-1,1-二氨基 - 腈(BDC)进行检测其中一个最重要的金属离子Cu(II)。这种新型荧光化学传感器具有独特的光学性质,大大斯托克斯(约170nm)大约。在1:9(v / v)甲醇-HEPES缓冲液(pH = 7.2)溶液中,检查BDC探针和Cu(II)离子中的荧光和UV-Vis吸收性能。此外,BDC对其他阳离子的CU(II)显示出高选择性。此外,该探针基于其在Cu(II)含量的检测限内的荧光性能和识别能力提供高选择性和灵敏度(LOD 2.3×10?7m)。 BDC传感器的建议机制归因于Cu(II)的螯合方法,与结合常数建立1:1金属 - 配体比复合物(Kbind = 7.16×10 4m≤1)。检测过程伴随在571nm处淬灭BDC的主要发射峰。收集所有实验数据,以研究几个重要参数,例如可逆性和浓度限制。此外,我们研究了各种金属离子对该显着Cu(II)离子的选择性和检测能力的干扰。这种新的化学体传感器在生理pH范围(pH7.2)中显示出超细致敏感,快速跟踪Cu(II),因此可以提出一种用于研究活细胞中Cu(II)的生物学功能的新颖开发方法。

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