4.7 Article

A novel electrochemical sensor for estradiol based on nanoporous polymeric film bearing poly{1-butyl-3-[3-(N-pyrrole)propyl]imidazole dodecyl sulfonate} moiety

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 193, 期 -, 页码 190-197

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2013.11.053

关键词

Ionic liquid; Polymer; Electropolymerizat ion; Estradiol; Voltammetry

资金

  1. Natural Science Foundation of China [21275166]
  2. Wuhan Science and Technology Bureau [201160723224]
  3. Natural Science Foundation of South-Central University for Nationalities [XTZ09005]
  4. Natural Science Foundation of Gangxi Province [2010GXNSFA013061]
  5. Research foundation of State General Administration of The People's Republic of China for Quality Supervision and Inspection and Quarantine [2012IK089]

向作者/读者索取更多资源

Using 1-butyl-3-[3-(N-pyrrole)propyl]imidazolium tetrafluoroborate ionic liquid as functional monomer, a nanoporous polymeric film modified glassy carbon electrode was fabricated with potential step from 0 V to 1.2V. Followed by anionic exchanging, a hydrophobic electrochemical interface bearing poly{ 1-butyl-3-[3-(N-pyrrole)propyl]imidazolium dodecyl sulfonate} moiety was achieved. The obtained nanoporous polymeric hydrophobic film modified glassy carbon electrode, which denoted as BPIDS/GCE, was characterized with scanning electron microscopy and electrochemical impedance spectrum. Voltammetric behavior of estradiol at the BPIDS/GCE was investigated, and an irreversible oxidation peak was observed in the potential range from -0.2V to 1.0 V. In comparison with the unmodified electrode, slightly positive shift of peak potential and dramatic increasing of peak current were observed obviously at the BPIDS/GCE. Experimental conditions for estradiol determination were optimized. Under optimal conditions, the oxidation peak current was linearly related to estradiol concentration in the range of 1.0 x 10(-7)-1.0 x 10(-5) mol L-1. The detection limit was estimated to be 5.0 x 10(-8) mol L-1(S/N = 3). The recoveries for the determination of estradiol in human serum samples demonstrated that an accurate method has been developed. (C) 2013 Elsevier B.V. All rights reserved.

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