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Insights into the mechanism of coreactant electrochemiluminescence facilitating enhanced bioanalytical performance

机译:探讨了促进生物分析性能增强的促进生物分析性能的辅成机理

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Electrochemiluminescence (ECL) is a powerful transduction technique with a leading role in the biosensing field due to its high sensitivity and low background signal. Although the intrinsic analytical strength of ECL depends critically on the overall efficiency of the mechanisms of its generation, studies aimed at enhancing the ECL signal have mostly focused on the investigation of materials, either luminophores or coreactants, while fundamental mechanistic studies are relatively scarce. Here, we discover an unexpected but highly efficient mechanistic path for ECL generation close to the electrode surface (signal enhancement, 128%) using an innovative combination of ECL imaging techniques and electrochemical mapping of radical generation. Our findings, which are also supported by quantum chemical calculations?and spin trapping methods, led to the identification of a family of alternative branched amine coreactants, which raises the analytical strength of ECL well beyond that of present state-of-the-art immunoassays, thus creating potential ECL applications in ultrasensitive bioanalysis.
机译:电化学发光(ECL)是一种强大的转导技术,由于其高灵敏度和低背景信号,在生物传感器领域具有主导作用。尽管ECL的内在分析强度尺寸依赖于其生成机制的整体效率,但旨在增强ECL信号的研究主要集中在对材料,发光体或器官的调查中,而基本机制研究则相对稀缺。在这里,我们发现使用ECL成像技术的创新组合和自由基生成的电化学映射接近电极表面(信号增强,128%)的ECL发电意外但高效的机械路径。我们的研究结果也得到了量子化学计算的支持?和自旋捕获方法,导致识别替代支链胺的家族,其提高了ECL的分析强度,超出了现有最先进的免疫测定的ECL ,从而在超敏感生物分析中产生潜在的ECL应用。

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