Abstract

In the present work, the sol-gel synthesis method was employed as strategy to obtain a magnetic and mesoporous silica-niobia material. The planned synthesis was based on the heterocondensation of niobium and silicon alkoxide precursors, in the presence of spherical magnetite particles. The resulting material presented interesting characteristics such as magnetism, large mesopores, in the range from 20 to 50 nm, and 68 m2 g−1 of surface area. These features allowed its use as modifier of carbon paste electrode for p-nitrophenol determination, since niobia has never been used in electrochemical sensors for the determination of nitrophenol compounds. By using differential pulse voltammetry technique, the electrode can be applied in a wide range of p-nitrophenol concentration, from 10 to 490 μmol L−1, with a limit of detection of 1.2 µmol L−1 and sensitivity up to 0.60 µA L µmol−1. The proposed electrode presented good sensitivity and selectivity and it was applied in real water samples.

Highlights

  • Phenolic compounds play significant physiological and biochemical roles in living systems

  • A magnetic silica-niobia material (MP@SiNb) was obtained by using the sol-gel synthesis method, which is based on the hydrolysis and condensation of molecular precursors

  • Silicon and niobium alkoxide precursors were employed along with magnetite particles (MP) coated with a silica shell (MP@SiO2)

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Summary

Introduction

Phenolic compounds play significant physiological and biochemical roles in living systems. Magnetic and Mesoporous Silica-Niobia Material as Modifier of Carbon Paste Electrode In this work, a CPE was modified with magnetic silica-niobia material (MP@SiNb), obtained by sol-gel method, using silicon and niobium molecular precursors and magnetite particles (MP).

Results
Conclusion

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