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首页> 外文期刊>Dyes and Pigments >A dual-responsive anthrapyridone-triazole-based probe for selective detection of Ni2+ and Cu2+: A mimetic system for molecular logic gates based on color change
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A dual-responsive anthrapyridone-triazole-based probe for selective detection of Ni2+ and Cu2+: A mimetic system for molecular logic gates based on color change

机译:基于双响应的Anthrapyridone-三唑基探针,用于选择性检测Ni2 +和Cu2 +:基于颜色变化的分子逻辑门的模拟系统

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A newly synthesized anthrapyridone-based probe (probe 1) with a pyrene-1-triazole unit as a pendant exhibited selective and sensitive detection of Cu2+ and Ni2+ among various metal ions. Dramatic color changes were observed for the chromo-fluorogenic probe 1 upon addition of Cu2+ (yellowish-green to pink) or Ni2+ (yellowish-green to magenta), enabling naked-eye detection of each metal ion. The limit of detection (LOD) of the probe based on a ratiometric method of determining an absorbance ratio was 0.5 mu M for both metal ions. In addition, probe 1 complexed with Ni2+ (i.e., a [probe 1 + Ni2+]-complex) was alternatively used to detect Cu2+ with high selectivity and sensitivity (LOD = 0.5 mu M). A fluorescence study showed that probe 1 gave rise to green emission, but in the presence of the metal ion, this fluorescence emission was completely (Cu2+) or partially (Ni2+) quenched, resulting in notable LODs of 0.2/0.5 mu M (Cu2+/Ni2+). Probe 1 therefore possesses a dual responsiveness to the presence of Cu2+ or Ni2+: color change or fluorescence quenching. The combined result with Ni2+ and Cu2+ indicates that the anthrapyridone-based probe serves as 'YES, INHIBIT, AND' logic gates. The current system was extensively analyzed by density functional theory calculations, nuclear magnetic resonance, high-resolution mass spectrometry, ultraviolet-visible light, and fluorescence spectroscopies.
机译:具有芘-1-三唑单元的新合成的基于蒽吡啶酮的探针(探针1),作为吊坠在各种金属离子中表现出Cu 2 +和Ni2 +的选择性和敏感性检测。在加入Cu 2 +(黄绿色至粉红色)或Ni2 +(黄绿色至洋红色)时,将观察到致染色的颜色变化,从而使每个金属离子的肉眼检测能够裸眼睛检测。基于测定吸光度率的比例方法的探针的检测极限为0.5μm,对于金属离子为0.5μm。另外,用Ni2 +(即[探针1 + Ni2 +] - 复合物络合的探针1用于检测Cu2 +,具有高选择性和灵敏度(LOD =0.5μm)。荧光研究表明,探针1产生绿色发射,但在金属离子的存在下,该荧光发射完全(Cu2 +)或部分(Ni2 +)淬灭,导致0.2 /0.5μm的值得注意的床(Cu2 + / Ni2 +)。因此,探针1对Cu2 +或Ni2 +的存在具有双重反应性:颜色变化或荧光猝灭。 Ni2 +和Cu2 +的合并结果表明,基于蒽吡啶酮的探针用作“是,禁止和”逻辑门。通过密度函数理论计算,核磁共振,高分辨率质谱,紫外 - 可见光和荧光光谱进行广泛分析电流系统。

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