4.7 Article

Quenched electrochemiluminescence of Ag nanoparticles functionalized g-C3N4 by ferrocene for highly sensitive immunosensing

期刊

ANALYTICA CHIMICA ACTA
卷 854, 期 -, 页码 40-46

出版社

ELSEVIER
DOI: 10.1016/j.aca.2014.11.018

关键词

Electrochemiluminescence immunosensor; Ag nanoparticles functionalized g-C3N4; Quenching; Ferrocene carboxylic acid; Au doped mesoporous Al2O3 nanorods

资金

  1. National Natural Science Foundation of China [21175057, 21375047, 21377046]
  2. Science and Technology Plan Project of Jinan [201307010]
  3. Shandong Provincial Natural Science Foundation, China [ZR2011EMQ010]
  4. Science and Technology Development Plan of Shandong Province [2014GSF120004]
  5. Special Foundation for Taishan Scholar Professorship of Shandong Province

向作者/读者索取更多资源

In this paper, a novel sandwich electrochemiluminescence (ECL) immunosensor was constructed by ferrocene for quenching Ag nanoparticles functionalized g-C3N4 (Ag@g-C3N4) emission. The prepared Ag@g-C3N4 had strong and stable ECL signals compared to pure g-C3N4 and primary antibody (Ab(1)) can be immobilized on Ag@g-C3N4 by adsorption of Ag nanoparticles. Ferrocene carboxylic acid (Fc-COOH) labeled secondary antibody was immobilized on Au doped mesoporous Al2O3 nanorods (Au@Al2O3-Fc-COOH@Ab(2)) as labels through adsorption ability of Au toward proteins. After a sandwich-type immunoreaction, a remarkable decrease of ECL signal was observed due to the ECL quenching of Ag@g-C3N4 by Au@Al2O3-Fc-COOH@Ab(2). As a result, the change of ECL intensity has a direct relationship with the logarithm of CEA concentrations in the range of 1 pg mL(-1)-100 ng mL(-1) with a detection limit of 0.35 pg mL(-1) (S/N = 3). Additionally, the proposed immunosensor shows high specificity, good reproducibility, and long-term stability. (C) 2014 Elsevier B.V. All rights reserved.

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