Detection of flufenamic acid based on affordable inorganic SrFe2O4 nanorods decorated sulfur atoms substituted graphitic carbon nitride nanocomposite

Vinitha Mariyappan, Naveen Karuppusamy, Tse Wei Chen, Shen Ming Chen*, Joefranklin Jesuraj, Muthumariappan Akilarasan, Bih Show Lou*, Jaysan Yu

*此作品的通信作者

研究成果: 期刊稿件文章同行評審

8 引文 斯高帕斯(Scopus)

摘要

Generally, the nanoparticle along with the nanosheet architecture has excellent physiochemical properties at the interface of electrode and electrolyte. In this work, the SrFe2O4 nanorod was prepared through the simple hydrothermal method, as well as the S-GCN prepared (urea + thiourea) by thermal polymerization, and using the solvent evaporation process SrFe2O4 nanorod was decorated on the S-GCN nanosheet, which is used for the electrochemical detection of flufenamic acid (FFA). The electrocatalytic activity of the bare GCE was enhanced by the SrFe2O4/S-GCN because SrFe2O4 has more active sides and S-GCN has a large surface area which is confirmed by the EIS and CV analysis. Moreover, the synergistic effect between SrFe2O4 nanorods and the S-GCN nanosheet provides the fast electron transfer property and enhanced electrocatalytic activity towards the FFA. Our proposed sensor exposed the lower level of the detection limit of 0.004 µM and the linear range of 0.01–384 µM with the LOQ of 0.015 µM. Furthermore, satisfactory recovery results were obtained while using the SrFe2O4/S-GCN modified electrode in the human urine and blood serum samples. Hence further development of our proposed SrFe2O4/S-GCN sensor will reduce the human health risk from FFA.

原文英語
頁(從 - 到)776-787
頁數12
期刊Process Safety and Environmental Protection
169
DOIs
出版狀態已出版 - 01 2023

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© 2022 The Institution of Chemical Engineers

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