Iron enriched domestic glassy carbon composite as powerful tool for the phenol sensing

Authors

  • D. A. Zherebtsov South Ural State University
  • D. S. Tolstoguzov South Ural State University
  • S. V. Shtin South Ural State University
  • K. R. Smolyakova South Ural State University
  • K. V. Matveev South Ural State University
  • D. M. Stankovic University of Belgrade

Keywords:

glassy carbon composite, Fe3O4 nanoparticles, square wave voltammetry, phenol detection

Abstract

The paper describes a new method for obtaining glassy carbon nanocomposite materials containing metals. New method for composite electrode production offers excellent mechanical and galvanic contact of active nanoparticles and glassy carbon matrix. Both glassy carbon, iron and magnetite nanoparticles were formed simultaneously upon calcination of phenol-formaldehyde resin and iron carboxylate solution in N,N-dimethylformamide. According to transmission electron microscopy, scanning electron microscopy and powder x-ray diffractometry, iron forms particles of 10 … 30 nm in size, uniformly distributed in the glassy carbon matrix and the main phases of iron are Fe and Fe3O4. The electrochemical behavior of the material in the presence of phenol was examined in detail and a square wave voltammetry method was developed for the detection of phenol, which enabled precise and accurate detection in the concentration range from 3 to 150 μm. During the work, conditions for the most accurate determination of phenol in aqueous solutions were found. The detection limit and the limit of quantitative determination of phenol in aqueous solutions on selected electrodes were determined. Finally, the method was successfully applied to control the concentration of phenol in the water of the Miass River, where it showed very little influence of pollutants and sensitivity to phenol.

Author Biographies

D. A. Zherebtsov, South Ural State University

доктор химических наук, старший научный сотрудник кафедры материаловедения и физико-химии материалов, старший научный сотрудник лаборатории экологических проблем и постиндустриальной агломерации

D. S. Tolstoguzov, South Ural State University

аспирант, инженер кафедры экологии и химической технологии, младший научный сотрудник лаборатории экологических проблем и постиндустриальной агломерации

S. V. Shtin, South Ural State University

кандидат химических наук, научный сотрудник лаборатории экологических проблем и постиндустриальной агломерации, доцент кафедры материаловедения и физико-химии материалов

K. R. Smolyakova, South Ural State University

кандидат химических наук, доцент кафедры «Экология и химическая технология»

K. V. Matveev, South Ural State University

лаборант-исследователь лаборатории экологических проблем и постиндустриальной агломерации, студент кафедры экологии и химической технологии

D. M. Stankovic, University of Belgrade

доктор философии, профессор (доцент) химического факультета

Published

2025-12-13