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A large Stokes shift, sequential, colorimetric fluorescent probe for sensing Cu2+/S2+ and its applications

机译:用于感测Cu2 + / S2 +的大型斯托克斯换档,顺序,比色荧光探针及其应用

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摘要

Copper ions (Cu2+) and sulfide (S2-) are important markers in many physiologies and pathological processes. In this work, a new near-infrared fluorescent probe 1 for colorimetric and sequential detection of Cu2+/S2- was designed and developed. The probe showed a rapid (less than 1 min), highly selective and sensitive response toward copper ions. Notably, the probe could also be applied to detect S2- through reversible formation-separation of complex 1-Cu2+ and CuS with a large Stokes shift of 234 nm. The detection limit for Cu2+ and S2- was found to be 1.8 x 10(-8) M and 1.5 x 10(-8) M, respectively. Furthermore, the binding stoichiometry between 1 and Cu2+ was found to be 1:1, the binding mode was also demonstrated using density functional theory (DFT) calculations and contrastive compound research. In addition, the probe was successfully applied in real water samples assay for the detection of Cu2+, and the strip papers experiments also showed that probe 1 can be used to detect Cu2+ and S2-.
机译:铜离子(Cu2 +)和硫化物(S2-)是许多生理学和病理过程中的重要标志物。在这项工作中,设计和开发了一种用于比色和顺序检测的新型近红外荧光探针1 - 是设计和开发的。探针显示出快速(小于1分钟),对铜离子的高度选择性和敏感的反应。值得注意的是,探针也可以应用于通过可逆地层分离的复合1-Cu2 +和CU的分离来检测S2,具有234nm的大斯托克斯偏移。发现Cu2 +和S2的检测限为1.8×10(-8)m和1.5×10(-8)m。此外,发现1和Cu2 +之间的结合化学计量为1:1,使用密度官能理论(DFT)计算和对比复合研究还证明了结合模式。此外,探针在实际水样中成功应用于检测Cu2 +,并且条带纸的实验还显示探针1可用于检测Cu2 +和S2-。

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