4.6 Article

Lowly-aggregated perylene diimide as a near-infrared electrochemiluminescence luminophore for ultrasensitive immunosensors at low potentials

期刊

ANALYST
卷 146, 期 11, 页码 3679-3685

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d1an00410g

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资金

  1. Natural Science Foundation of Shandong Province [ZR2017BB084]
  2. National Natural Science Foundation of China [21804063, 21427808]
  3. Young Innovative Talents Introduction & Cultivation Program for Colleges and Universities of Shandong Province: Innovative Research Team on biomedical sensing and food safety Research

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A novel perylene diimide molecule was designed to self-assemble into a nanostructure, reducing aggregation and enhancing luminescence. The immunosensor fabricated using this luminescent material showed a wider linear response range and lower detection limit, demonstrating good feasibility in human serum samples.
In the electrochemiluminescence (ECL) field, most reported luminophores were focused on high-triggering potential and short wavelength, which was adverse for the ECL theory study and application at low potentials. Perylene diimide derivatives could emit near-infrared (NIR) ECL at low-triggering potential; however, they are always highly aggregated into a microrod structure and stacked together, which largely limited their application in biological fields such as bio-sensing and bio-imaging. To overcome these obstacles, we designed a novel perylene diimide molecule, namely N,N '-dicaproate sodium-3,4,9,10-perylenedicarboximide (PDI-COONa). This molecule self-assembled into a two-dimensional network nanostructure, which largely decreased the aggregation degree of PDI molecules and provided solid bases for designing lowly-aggregated PDI molecules. Also, the formed nanoluminophore produced strong emission at -0.26 V with an NIR wavelength 700 nm, which should be due to the excited J-type PDI-COO- dimers. Moreover, this network nanoluminophore well-dispersed on graphene oxide (GO) as an ECL nanomaterial to label secondary antibodies and fabricate a sandwiched immunosensor for alpha-fetoprotein (AFP) detection between 0 and -0.6 V. This immunosensor showed a wider linear response for AFP ranging from 0.1 fg mL(-1) to 1 mu g mL(-1) with a low detection limit 0.0353 fg mL(-1) compared with other immunosensors based on PDI microrod-modified GO ECL materials. The fabricated immunosensor also showed good feasibility in human serum samples.

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