4.5 Article

A RAPID ELECTROCHEMICAL MONITORING PLATFORM FOR SENSITIVE DETERMINATION OF THIAMETHOXAM BASED ON β-CYCLODEXTRIN-GRAPHENE COMPOSITE

Journal

ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
Volume 36, Issue 8, Pages 1991-1997

Publisher

WILEY
DOI: 10.1002/etc.3743

Keywords

Thiamethoxam; Electrochemical sensor; beta-cyclodextrin-graphene composite; Brown rice; Determination

Funding

  1. National Natural Science Foundation of China [31000831]
  2. National Science Foundation for Postdoctoral Scientists of China [20090450478]
  3. Natural Science Research and Innovation Funds of Harbin Institute of Technology [HIT.NSRIF.2008.30]
  4. Postdoctoral Science-Research Developmental Foundation of Heilongjiang Province [LBH-Q12085]
  5. Natural Science Foundation of Heilongjiang Province [C2016033]

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A rapid monitoring platform for sensitive voltammetric detection of thiamethoxam residues is reported in the present study. A beta-cyclodextrin-reduced graphene oxide composite was used as a reinforcing material in electrochemical determination of thiamethoxam. Compared with bare glassy carbon electrodes, the reduction peak currents of thiamethoxam at reduced graphene oxide/glassy carbon electrode and beta-cyclodextrin-reduced graphene oxide/glassy carbon electrode were increased by 70- and 124-fold, respectively. The experimental conditions influencing voltammetric determination of thiamethoxam, such as the amount of beta-cyclodextrin-reduced graphene oxide, solution pH, temperature, and accumulation time, were optimized. The reduction mechanism and binding affinity of this material is also discussed. Under optimal conditions, the reduction peak currents increased linearly between 0.5 mu M and 16 mu M concentration of thiamethoxam. The limit of detection was 0.27 mu M on the basis of a signal-to-noise ratio of 3. When the proposed method was applied to brown rice in a recovery test, the recoveries were between 92.20% and 113.75%. The results were in good concordance with the high-performance liquid chromatography method. The proposed method therefore provides a promising and effective platform for sensitive and rapid determination of thiamethoxam. (C) 2017 SETAC

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