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A Reversible Bis(Salamo)-Based Fluorescence Sensor for Selective Detection of Cd2+ in Water-Containing Systems and Food Samples

机译:一种基于可逆双(Salamo)的荧光传感器用于选择性检测含水系统和食品样品中的Cd2 +

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摘要

A novel, simple, highly selective, and sensitive fluorescence chemosensor for detecting Cd2+ that was constructed from a bis(salamo)-type compound (H4L) with two N2O2 chelating moieties as ionophore was successfully developed. Sensor H4L could show fluorescence turn-on response rapidly and significant selectivity to Cd2+ over many other metallic ions (Cu2+, Ba2+, Ca2+, K+, Cr3+, Mn2+, Sr2+, Co2+, Na+, Li+, Ni2+, Ag+, and Zn2+), and a clear change in color from colorless to yellow that can be very easily observed via the naked eyes in the existence of Cd2+, while other metallic ions do not induce such a change. Interestingly, its fluorescent intensity was increased sharply with the increased concentration of Cd2+. The detection limit of sensor H4L towards Cd2+ was down to 8.61 × 10−7 M.
机译:成功开发了一种新颖,简单,高选择性和灵敏的检测Cd 2 + 的荧光化学传感器,该传感器是由具有两个N2O2螯合部分的双(salamo)型化合物(H4L)作为离子载体构建的。 H4L传感器可以快速显示荧光开启响应,并且对许多其他金属离子(Cu 2 + ,Ba 2 + 2 + 选择性。 >,Ca 2 + ,K + ,Cr 3 + ,Mn 2 + ,Sr 2 + ,Co 2 + ,Na + ,Li + ,Ni 2 + ,Ag < sup> + 和Zn 2 + ),并且从Cd 2的存在可以通过肉眼很容易地观察到从无色到黄色的明显颜色变化。 + ,而其他金属离子则不会引起这种变化。有趣的是,其荧光强度随着Cd 2 + 浓度的增加而急剧增加。 H4L对Cd 2 + 的检测限降至8.61×10 -7 M。

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