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Ultrasensitive fluorescent probe for copper ion based on cadmium selenide/cadmium sulfide quantum dots capped with dimercaprol

机译:基于硒化镉/硫化镉量子点的铜离子超细荧光探针用DiMercaprol覆盖

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摘要

A new ultrasensitive copper ion fluorescent probe based on cadmium selenide/cadmium sulfide quantum dots capped with dimercaprol is described. Dimercaprol was bonded to the quantum dots through a surface ligand exchange to form dimercaprol-capped quantum dots whose fluorescence could be quenched by the coordination of dimercaprol on quantum dots' surface with copper ion. The fluorescent probe based on dimercaprol-capped quantum dots showed a very good linear response range to copper ion from 0.1 to 50 mu gL(-1) with the detection limit of 0.087 mu gL(-1). The proposed method exhibited excellent sensitivity and selectivity due to the specific and strong affinity of dimercaprol with copper ion and the unique photoluminescence properties of quantum dots. The possible quenching mechanism was discussed and the probe was successfully applied to the determination of ultratrace copper in real samples.
机译:描述了一种基于硒化镉/硫化镉量子点的新型超敏铜离子荧光探针,其覆盖与DiMercaprol的甲硫化镉/硫酸镉量子点。 通过表面配体交换将DiMercaprol键合到量子点以形成荧光通过铜离子的量子点表面上的荧光可以淬灭荧光的荧光。 基于DiMercapRol-升量子点的荧光探针显示出从0.1至50μGL(-1)的铜离子的非常好的线性响应范围,检测限为0.087μG1(-1)。 所提出的方法由于DiMercaprol与铜离子的特异性和强的亲和力以及量子点的独特光致发光性质,表现出优异的敏感性和选择性。 讨论了可能的猝灭机制,并成功地应用于真实样品中超铜铜的测定。

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