电化学发光
生物分析
纳米技术
电化学
生物传感器
机制(生物学)
信号(编程语言)
材料科学
电极
计算机科学
化学
物理
量子力学
物理化学
程序设计语言
作者
Alessandra Zanut,Andrea Fiorani,Sofia Canola,Toshiro Saito,Nicole Ziebart,Stefania Rapino,Sara Rebeccani,Antonio Barbon,Takashi Irie,Hans‐Peter Josel,Fabrizia Negri,Massimo Marcaccio,Michaela Windfuhr,Kyoko Imai,Giovanni Valenti,Francesco Paolucci
标识
DOI:10.1038/s41467-020-16476-2
摘要
Abstract 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.
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