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Electrogenerated Chemiluminescent Anion Sensing: Selective Recognition and Sensing of Pyrophosphate

机译:电生化学发光阴离子传感:焦磷酸的选择性识别和传感

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摘要

Recently, significant advances have been made independently in electrogenerated chemiluminescence (ECL) analysis and supramolecular anion sensing. Herein, we demonstrate a new proof of concept for ECL-based pyrophosphate (PPi) sensing, where the emission intensity is changed by electrochemical turn-on. The ECL PPi sensor (1-2Zn) consists of two orthogonally bonded moieties: boron dipyrromethene (ECL reporter) and a phenoxobridged bis(Zn~(2+)-dipicolylamine) complex (PPi receptor). The presence of PPi is confirmed from the change in the intensity of green ECL generated from the former when PPi is selectively recognized by the latter. During PPi recognition, changes are caused in the electronic states of the receptor, and this stimulates the attenuation of ECL intensity. The electrochemical "on-off" triggering of light emission upon anion binding forms the basis of a new anion sensing strategy. We expect that green-colored ECL sensing would offer an advantage to current ECL analysis.
机译:最近,在电化学发光(ECL)分析和超分子阴离子感测方面已经取得了重大进展。在这里,我们演示了基于ECL的焦磷酸盐(PPi)感应的新概念证明,其中的发射强度通过电化学开启而改变。 ECL PPi传感器(1-2Zn)由两个正交键合的部分组成:硼二吡咯亚甲基(ECL报告分子)和苯氧桥双(Zn〜(2 +)-dipicolylamine)复合物(PPi受体)。当PPi被后者选择性地识别时,由前者产生的绿色ECL强度的变化证实了PPi的存在。在PPi识别过程中,受体的电子状态发生变化,这会刺激ECL强度的衰减。阴离子键合时光发射的电化学“开-关”触发形成了新的阴离子感测策略的基础。我们期望绿色的ECL传感将为当前的ECL分析提供优势。

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