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◆ ACS sensors2026-09-23

Self-Enhanced Luminophore with an Intrinsically Integrated "Energy Ladder" and CdIn2S4-Enabled Coreactant Activation for Electrochemiluminescence Sensing.

Wenzhuang Song, Shuyue Xing, Qiangqiang Wang, Dawei Fan, Xiang Ren, Zhongfeng Gao, Hongmin Ma, Qin Wei, Dan Wu

原始摘要(英文原文)· Original abstract
In recent years, electrochemiluminescence (ECL) has attracted widespread attention in bioanalysis and clinical diagnostics. However, improving its luminescence efficiency remains a key challenge. In this work, an efficient ECL system was constructed by synergistically regulating the energy utilization of the luminophore and the activation of the coreactant. A lanthanide-based coordination framework luminophore, Gd/Tb-DPA/DHTA, was designed, in which an intrinsically integrated "energy ladder" enables efficient energy transfer and utilization between the ligands and lanthanide ions. Meanwhile, the introduced Gd3+ endowed the luminophore with catalytic activity toward S2O82-, thereby coupling the internal energy-transfer process with coreactant activation and giving rise to self-enhanced ECL behavior. In addition, S-vacancy-containing CdIn2S4 was introduced as a coreactant activation unit to promote the adsorption and activation of S2O82- and accelerate the generation of SO4•- reactive species, thereby further enhancing the ECL performance. Based on this design, a sandwich-type ECL biosensor was constructed for the detection of carcinoembryonic antigen (CEA). The sensor exhibited a good linear relationship in the range from 100 fg mL-1 to 100 ng mL-1, with a detection limit as low as 43.5 fg mL-1, demonstrating excellent analytical performance. This work provides a new design strategy for constructing high-performance ECL sensing platforms through the synergistic integration of energy transfer regulation and defect engineering.
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Self-Enhanced Luminophore with an Intrinsically Integrated "Energy Ladder" and CdIn2S4-Enabled Coreactant Activation for Electrochemiluminescence Sensing. — 科研速览 Science Skim